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@@ -1,48 +1,42 @@
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### This repo is for inverse kinematics and verification
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In this branch, the qp-based inverse kinematics method is modified as a python class. The user can call it as in `main.py`
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In this branch, the **integrated** inverse kinematics method is packed into one python class **rm75_kinematics** in ``rm75_kinematics.py``.
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Inverse Kinematics (IK) is numerically obtained through quadratic programming (QP).
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The user can call it as in `test1.py`, `test2.py`.
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Verification is done with Mujoco simulation.
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How to use
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Key specifications:
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1. Time consumption.
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2. Success rate
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3. Minial joint variation.
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Next:\
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Comparison with Realman official IK method.
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Embedded with current demo.
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### Comparison (05June2026):
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- With current dual arm joint limit,
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```aiignore
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from rm75_kinematics import rm75_kinematics
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robot_kine = rm75_kinematics(urdf_path='./urdf_rm75/RM75-SCI.urdf',
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mesh_dir='./urdf_rm75',
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tcps=["scissor_tcp", "camera_tcp"],
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tools_in_ee=tools_in_ee,min_j=lb, max_j=ub)
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```
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ub = np.array([150.0, 110.0, 170.0, 130, 175.0, 125.0, 179.0])
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lb = np.array([-150.0, -30.0, -170.0, -130, -175.0, -125.0, -179.0])
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Parameter definition:
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- urdf_path: the robot description file, ending with `.urdf`.
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- mesh_dir: the robot parts, ending with `.stl`.
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- tcps: the tool central points defined in urdf file, if no, ignore it.
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- tools_in_ee: the installation of different tools attached to the end-effector of the arm (jont7+link7).
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### Current functions ###
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1. `get_ik_result`
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```aiignore
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ret_ik, q = robot_kine.get_ik_result(target_position=[0.2, -0.2 , 0.5 ],
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target_rpy=[0.2022060487764064, -0.0097962261845583, -0.6518417572686532],
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initial_guess=[0.1] * 7, tool=tool_name)
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```
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the success rates for **qp-based ik** and **realman Algo ik** are **63%** and **46%**.\
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At least one solver works out the ik, rate = **74%**.
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- With realman-75 physical joint limit,
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2. `get_fk_result`
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```aiignore
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p = robot_kine.get_fk_result(joint_angles=q,tool=tool_name)
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```
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ub = np.array([179.0, 129.0, 179.0, 134, 179.0, 127.0, 359.0])
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lb = -ub
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```
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the success rates for **qp-based ik** and **realman Algo ik** are **76%** and **51%**.\
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At least one solver works out the ik, rate = **84%**.
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### update(1st July 2026)
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In each iteration, update optimization formula:
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- new cost item for distance from middle of the joint range.
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- set up different weight for different joints motion.
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<img src="img/optimization.png" alt="Cost" width="400">
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<img src="img/cons.png" alt="Cost" width="400">
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<img src="img/osqp.png" alt="Cost" width="400">
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3. `get_self_collision`
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```aiignore
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self_collision_sts = robot_kine.get_self_collision(q)
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```
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@@ -1,6 +0,0 @@
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#!/bin/bash
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echo "Fixing robotics environment..."
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conda activate coppeliasim
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export PYTHONPATH="/home/zl/miniforge3/envs/coppeliasim/lib/python3.10/site-packages"
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pip install osqp==0.6.2.post8 --force-reinstall
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python -c "import osqp; print(f'OSQP version: {osqp.__version__}')"
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@@ -1,128 +0,0 @@
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# conda activate coppeliasim
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# env fix, in terminal: fix_robotics_env.sh
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from rm75_kine_qp import KinematicsSolver as kine_qp
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from rm75_kine_rm import rm75_kine_api as kine_rm
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from rm75_mjc import MuJoCoPositionController
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from Robotic_Arm.rm_robot_interface import *
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import time
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from math import radians, degrees, pi, cos, sin
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import numpy as np
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# pose expression of tool-tip in end-effector, x y z quatx quaty quatz quatw
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# load: kg, mass_center_x in ee frame: m, y, z, then last threes are for filling
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tools_in_ee = {
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'scissor': np.array([[0.0, 0.0, 0.19, 0.0, 0.0, 0.0, 1.0],[0.66, 0.0, 0.0, 0.06, 0.0, 0.0, 0.0]],dtype=np.float64),
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'omnipic': np.array([[0.0, 0.0, 0.16, 0.0, 0.0, 0.0, 1.0],[0.43, 0.0, 0.0, 0.06, 0.0, 0.0, 0.0]],dtype=np.float64),
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'minisci': np.array([[0.0, 0.0, 0.19, 0.0, 0.0, 0.0, 1.0],[0.46, 0.0, 0.0, 0.06, 0.0, 0.0, 0.0]],dtype=np.float64),
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'no_tool': np.array([[0.0, 0.0, 0.0, 0.0, 0.0, 0.0, 1.0],[0.0, 0.0, 0.0, 0.0, 0.0, 0.0, 0.0]],dtype=np.float64),
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}
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# joint limit
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ub = np.array([150.0, 110.0, 170.0, 130, 175.0, 125.0, 179.0]) / 180 * pi
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lb = np.array([-150.0, -30.0, -170.0, -130, -175.0, -125.0, -179.0]) / 180 * pi
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# ub = np.array([179.0, 129.0, 179.0, 134, 179.0, 127.0, 359.0])/180*pi
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# lb = -ub
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tool_name = "scissor"
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def main():
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"""Demonstrate pure position control"""
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# Create controller
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robot_mjk = MuJoCoPositionController()
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# ----------- rm75 qp based kine ------------
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robot_kine_qp = kine_qp(urdf_path='/home/zl/Downloads/urdf_rm75/RM75-B.urdf', mesh_dir='/home/zl/Downloads/urdf_rm75')
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robot_kine_qp.add_tool_frames(tools_in_ee)
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robot_kine_qp.cfg_j_limit(min_j=lb, max_j=ub, rad_flag=True)
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# ---------- rm75 official algorithm -----------
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robot_kine_rm = kine_rm()
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robot_kine_rm.add_tool_frames(tools_in_ee)
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robot_kine_rm.cfg_j_limit(min_j=lb, max_j=ub, rad_flag=True)
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# -------------- for comparison ----------------
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print(f'in the comparison part')
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if True:
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result = np.array([[0,0],[0,0]], dtype=np.int32) # to collect ik result qp_fk, qp_ik, rm_fk, rm_ik
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solve_sum = 0
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for i in range(10):
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print(f'\n-------------- in i = {i} ----------------')
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joint_rand = np.random.uniform(ub, lb)
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print(f'the predefined joints are {joint_rand}')
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# -------------- fk ------------------
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fk_qp_p1 = robot_kine_qp.forward_kinematics(joint_angles=joint_rand.tolist(), tool=tool_name)
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fk_rm_p1 = robot_kine_rm.forward_kinematics(joint_angles=joint_rand.tolist(), tool=tool_name)
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d_fk = cal_pose_deviation(pose1=fk_rm_p1, pose2=fk_qp_p1)
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print(f'fk_qp_p1 = {fk_qp_p1}, fk_rm_p1 = {fk_rm_p1}, d_fk = {d_fk}\n')
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# ----------- ik ----------------
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t_p = fk_rm_p1
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joint_rand_init = np.random.uniform(ub, lb)
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print(f'the guess is {joint_rand_init}')
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ret_qp, q = robot_kine_qp.inverse_kinematics( target_position=t_p[0:3], target_rpy=t_p[3:6], initial_guess=joint_rand_init, tool=tool_name)
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if ret_qp == 0:
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fk_qp_p2 = robot_kine_qp.forward_kinematics(q, tool=tool_name)
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d_p_ik = cal_pose_deviation(pose1=t_p, pose2=fk_qp_p2)
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print(f'-- success, in the qp ik, fk_qp_p2 = {fk_qp_p2}, d_p_ik = {d_p_ik}')
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if d_p_ik < 0.01:
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result[0][1] += 1
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robot_mjk.send_command(q)
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robot_mjk.wait_until_reached()
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robot_mjk.print_state()
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else:
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fk_qp_p2 = robot_kine_qp.forward_kinematics(q, tool=tool_name)
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d_p_ik = cal_pose_deviation(pose1=t_p, pose2=fk_qp_p2)
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print(f'-- fail, in the qp ik, fk_qp_p2 = {fk_qp_p2}, d_p_ik = {d_p_ik},q = {q}, ret_qp = {ret_qp}')
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ret_rm, q = robot_kine_rm.inverse_kinematics(target_position=t_p[0:3], target_rpy=t_p[3:6], initial_guess=joint_rand_init, tool=tool_name)
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if ret_rm == 0:
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fk_rm_p2 = robot_kine_rm.forward_kinematics(joint_angles=q, tool=tool_name)
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d_p_ik = cal_pose_deviation(pose1=t_p, pose2=fk_rm_p2)
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print(f'== sucess, in the rm ik, fk_rm_p2 = {fk_rm_p2}, d_p_ik = {d_p_ik} ,q = {q}, ret_qp = {ret_qp}')
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if d_p_ik < 0.01:
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result[1][1] += 1
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else:
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print(f'== fail in the rm ik, ret = {ret_rm}, q = {q}')
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if ret_qp == 0 or ret_rm == 0:
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solve_sum += 1
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print(f'results with qp and rm for ik are {result}')
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print(f'solve_sum is {solve_sum}')
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def cal_pose_deviation(pose1, pose2):
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d_fk_p1 = np.array(pose1) - np.array(pose2)
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for j in [3, 4, 5]:
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while d_fk_p1[j] > pi:
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d_fk_p1[j] -= 2 * pi
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while d_fk_p1[j] < -pi:
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d_fk_p1[j] += 2 * pi
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d_fk = np.linalg.norm(d_fk_p1)
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return d_fk
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if __name__ == "__main__":
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main()
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@@ -1,824 +0,0 @@
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#!/usr/bin/env python3
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import sys
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import os
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import pinocchio as pin
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import numpy as np
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import osqp
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from scipy import sparse
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from math import radians, degrees, pi, cos, sin
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import time
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import threading
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class KinematicsSolver():
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def __init__(self,urdf_path="urdf_rm75/RM75-B.urdf", mesh_dir="urdf_rm75"):
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"""
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for realman 75b
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Initialize robotic arm kinematics using Pinocchio (ROS2 version).
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unit: m, rad
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"""
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print(f' ------------ the qp based kinematic initialising -----------')
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self.model, collision_model, visual_model = pin.buildModelsFromUrdf(urdf_path, mesh_dir)
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self.cfg_j_limit()
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q_range = (
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self.model.upperPositionLimit[:7] -
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self.model.lowerPositionLimit[:7]
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)
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self.w_q_limit = np.diag(1.0 / (q_range ** 2))
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self.q_mid = 0.5 * (self.model.lowerPositionLimit[:7] + self.model.upperPositionLimit[:7])
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# ---------- for reused qp_solver ------------------
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self.nv = 7
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# Full dense symmetric matrix structure
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# P_template = np.triu(np.ones((7, 7)))
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self.P_pattern = sparse.triu(np.ones((7,7))).tocsc()
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|
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P_sparse = sparse.csc_matrix(self.P_pattern)
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A_sparse = sparse.eye(7, format='csc')
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self.osqp_solver = osqp.OSQP()
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|
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self.osqp_solver.setup(
|
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P=P_sparse,
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q=np.zeros(7),
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A=A_sparse,
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l=-np.ones(7),
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u=np.ones(7),
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verbose=False,
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warm_start=True,
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polish=False
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)
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|
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self.W = np.diag([1, 1, 1, 0.4, 0.4, 0.4])
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# Smaller value => joint moves more actively
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# Larger value => joint moves less / more lazy
|
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self.joint_motion_weight = np.diag([
|
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1.0, 1.0, 1.0, 1.0,
|
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0.3, 0.3, 0.2
|
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])
|
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|
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def add_frame(self,frame_name, position, rotationXYZ):
|
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'''
|
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:param frame_name: str
|
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:param position: [x, y, z] target position (meters)
|
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:param rotationXYZ: [x, y, z] target rotation (rad)
|
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'''
|
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camera_rotation = pin.rpy.rpyToMatrix( rotationXYZ[0], rotationXYZ[1], rotationXYZ[2] )
|
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camera_offset = pin.SE3(
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camera_rotation,
|
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np.array(position)
|
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)
|
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self.model.addFrame( pin.Frame( frame_name, self.model.getJointId("joint_7"), self.model.getFrameId("link_7"), camera_offset, pin.FrameType.OP_FRAME ) )
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|
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def add_tool_frames(self,dict_frames):
|
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self.tool_frames ={}
|
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for tool_name in dict_frames:
|
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tool_attr = dict_frames[tool_name]
|
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position = tool_attr[0][0:3]
|
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rotationXYZ = self.quaternion_to_euler(tool_attr[0][3:7])
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self.add_frame(tool_name, position, rotationXYZ)
|
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self.tool_frames.update({tool_name: self.model.getFrameId(tool_name)})
|
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self.data = self.model.createData()
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|
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|
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def cfg_j_limit(self, min_j=None, max_j=None, rad_flag = True):
|
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if min_j is None:
|
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min_j = [-3.14159, -2.2689, -3.14159, -2.3562, -3.14159, -2.234, -6.14159]
|
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if max_j is None:
|
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max_j = [3.14159, 2.2689, 3.14159, 2.3562, 3.14159, 2.234, 6.14159]
|
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if rad_flag:
|
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for i in range(7):
|
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self.model.lowerPositionLimit[i] = min_j[i]
|
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self.model.upperPositionLimit[i] = max_j[i]
|
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else:
|
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for i in range(7):
|
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self.model.lowerPositionLimit[i] = min_j[i] / 180 * pi
|
||||
self.model.upperPositionLimit[i] = max_j[i] / 180 * pi
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|
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def forward_kinematics(self, joint_angles, tool="omnipic"):
|
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"""
|
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Compute forward kinematics.
|
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|
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Args:
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joint_angles: List or array of 7 joint angles (radians)
|
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tool: Name of frame to compute
|
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|
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Returns:
|
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dict: Position, rotation, rpy, quaternion
|
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unit: position: m
|
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rpy: rad
|
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"""
|
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if len(joint_angles) != 7:
|
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raise ValueError(f"RM75 has 7 joints, got {len(joint_angles)}")
|
||||
|
||||
# Create configuration vector
|
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q = pin.neutral(self.model)
|
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for i, angle in enumerate(joint_angles):
|
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q[i] = angle
|
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|
||||
# Compute forward kinematics
|
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pin.forwardKinematics(self.model, self.data, q)
|
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pin.updateFramePlacements(self.model, self.data)
|
||||
|
||||
# Get frame transform
|
||||
frame_id = self.tool_frames[tool]
|
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frame_transform = self.data.oMf[frame_id]
|
||||
|
||||
# Extract results
|
||||
position = frame_transform.translation.copy()
|
||||
rotation = frame_transform.rotation.copy()
|
||||
|
||||
# Compute RPY
|
||||
rpy = pin.rpy.matrixToRpy(rotation)
|
||||
|
||||
# Compute quaternion
|
||||
# quat = pin.Quaternion(rotation)
|
||||
pose = np.concatenate([position, rpy], axis=0)
|
||||
return pose
|
||||
# return {
|
||||
# 'position': position,
|
||||
# # 'rotation': rotation,
|
||||
# 'rpy': rpy,
|
||||
# 'quaternion': [quat.x, quat.y, quat.z, quat.w],
|
||||
# # 'transform': frame_transform
|
||||
# }
|
||||
|
||||
def inverse_kinematics(self, target_position, target_rpy=None,
|
||||
target_quat=None, initial_guess=None,
|
||||
max_iter=500, tolerance=5e-3, debug=False, tool="ee"):
|
||||
"""
|
||||
Compute inverse kinematics using differential IK with multiple strategies.
|
||||
|
||||
Args:
|
||||
target_position: [x, y, z] target position (meters)
|
||||
target_rpy: [roll, pitch, yaw] target orientation (radians)
|
||||
target_quat: [x, y, z, w] target orientation as quaternion
|
||||
initial_guess: Initial joint angles (radians)
|
||||
max_iter: Maximum iterations
|
||||
tolerance: Error tolerance
|
||||
debug: Print debug information
|
||||
tool: the frame name ('scissor', 'camera', 'ee')
|
||||
|
||||
Returns:
|
||||
tuple: (joint_angles, success, error)
|
||||
"""
|
||||
# Build target SE3 placement
|
||||
if target_quat is not None:
|
||||
quat = pin.Quaternion(target_quat[3], target_quat[0], target_quat[1], target_quat[2])
|
||||
target_rotation = quat.matrix()
|
||||
elif target_rpy is not None:
|
||||
target_rotation = pin.rpy.rpyToMatrix(target_rpy[0],
|
||||
target_rpy[1],
|
||||
target_rpy[2])
|
||||
else:
|
||||
target_rotation = np.eye(3)
|
||||
|
||||
target_placement = pin.SE3(target_rotation, np.array(target_position))
|
||||
|
||||
# Try multiple initial guesses
|
||||
initial_guesses = []
|
||||
|
||||
if initial_guess is not None:
|
||||
initial_guesses.append(initial_guess)
|
||||
else:
|
||||
# Try different initial configurations
|
||||
initial_guesses.append([0.1] * 7) # Zero config
|
||||
|
||||
|
||||
best_solution = None
|
||||
best_error = float('inf')
|
||||
|
||||
for guess_idx, guess in enumerate(initial_guesses):
|
||||
q = pin.neutral(self.model)
|
||||
for i, angle in enumerate(guess):
|
||||
if i < len(q):
|
||||
q[i] = np.clip(angle, self.model.lowerPositionLimit[i],
|
||||
self.model.upperPositionLimit[i])
|
||||
q_ref = q.copy()
|
||||
|
||||
# Differential IK with adaptive damping
|
||||
damping = 0.1
|
||||
damping_reduction = 0.95
|
||||
iter_count = 0
|
||||
prev_error = float('inf')
|
||||
|
||||
ee_frame_id = self.tool_frames[tool]
|
||||
|
||||
J = pin.computeFrameJacobian(
|
||||
self.model,
|
||||
self.data,
|
||||
q,
|
||||
ee_frame_id,
|
||||
pin.ReferenceFrame.LOCAL
|
||||
)
|
||||
|
||||
pin.forwardKinematics(self.model, self.data, q)
|
||||
pin.updateFramePlacements(self.model, self.data)
|
||||
|
||||
current_placement = self.data.oMf[ee_frame_id]
|
||||
|
||||
error_SE3 = current_placement.actInv(target_placement)
|
||||
error_vec = pin.log(error_SE3).vector
|
||||
|
||||
# print("\n initial error =", np.linalg.norm(error_vec))
|
||||
# print(error_vec)
|
||||
|
||||
while iter_count < max_iter:
|
||||
# Compute forward kinematics
|
||||
|
||||
pin.computeJointJacobians(self.model, self.data, q)
|
||||
pin.framesForwardKinematics(self.model, self.data, q)
|
||||
|
||||
# Get current end-effector placement
|
||||
current_placement = self.data.oMf[ee_frame_id]
|
||||
|
||||
# Compute error
|
||||
error_SE3 = current_placement.actInv(target_placement)
|
||||
error_vec = pin.log(error_SE3).vector
|
||||
error_norm = np.linalg.norm(error_vec)
|
||||
|
||||
if error_norm < tolerance:
|
||||
if error_norm < best_error:
|
||||
best_error = error_norm
|
||||
best_solution = q[:7].copy()
|
||||
break
|
||||
|
||||
# Check if error is increasing (diverging)
|
||||
if error_norm > prev_error * 1.1 and iter_count > 10:
|
||||
damping = min(1.0, damping * 1.5)
|
||||
else:
|
||||
damping = max(0.01, damping * damping_reduction)
|
||||
|
||||
|
||||
J = pin.getFrameJacobian(
|
||||
self.model,
|
||||
self.data,
|
||||
ee_frame_id,
|
||||
pin.ReferenceFrame.LOCAL
|
||||
)
|
||||
|
||||
# =========================
|
||||
# QP-based IK
|
||||
# =========================
|
||||
w_ref = 0.0001
|
||||
w_limit_mid = 0.00002
|
||||
|
||||
J_eff = pin.Jlog6(error_SE3) @ J #J #
|
||||
|
||||
H = J_eff.T @ self.W @ J_eff
|
||||
|
||||
|
||||
H += damping * damping * self.joint_motion_weight
|
||||
H += w_ref * np.eye(7)
|
||||
H += w_limit_mid * self.w_q_limit
|
||||
|
||||
H_triu = sparse.triu(H).tocsc()
|
||||
|
||||
g = -J_eff.T @ self.W @ error_vec
|
||||
g += w_ref * (q[:7] - q_ref[:7])
|
||||
g += w_limit_mid * self.w_q_limit @ (q[:7] - self.q_mid)
|
||||
|
||||
# -------------------------
|
||||
# Joint velocity constraints
|
||||
# -------------------------
|
||||
dq_limit = np.array([ 0.05, 0.05, 0.05, 0.05, 0.08, 0.08, 0.10 ]) # rad per iteration
|
||||
|
||||
lb = -dq_limit * np.ones(7)
|
||||
ub = dq_limit * np.ones(7)
|
||||
|
||||
# -------------------------
|
||||
# Joint position constraints
|
||||
# -------------------------
|
||||
|
||||
q_min_step = self.model.lowerPositionLimit[:7] - q[:7]
|
||||
q_max_step = self.model.upperPositionLimit[:7] - q[:7]
|
||||
|
||||
lb = np.maximum(lb, q_min_step)
|
||||
ub = np.minimum(ub, q_max_step)
|
||||
|
||||
# -------------------------
|
||||
# Solve QP
|
||||
# ------------------------
|
||||
# Update solver
|
||||
self.osqp_solver.update(
|
||||
Px= H_triu.data, #H[np.triu_indices(7)], #
|
||||
q=g,
|
||||
l=lb,
|
||||
u=ub
|
||||
)
|
||||
|
||||
# Solve
|
||||
result = self.osqp_solver.solve()
|
||||
if result.info.status != 'solved':
|
||||
break
|
||||
|
||||
dq = result.x
|
||||
|
||||
if dq is None:
|
||||
break
|
||||
|
||||
# Apply joint limits with scaling
|
||||
alpha = 1.0
|
||||
q = pin.integrate(self.model, q, alpha * dq)
|
||||
|
||||
prev_error = error_norm
|
||||
iter_count += 1
|
||||
|
||||
if best_solution is not None:
|
||||
# return best_solution, True, best_error, iter_count
|
||||
return 0, best_solution.tolist()
|
||||
else:
|
||||
# return q[:7].copy(), False, error_norm, iter_count
|
||||
return -1, q[:7].copy().tolist()
|
||||
|
||||
def quaternion_to_euler(self, q):
|
||||
"""
|
||||
Convert quaternion to Euler angles (roll, pitch, yaw)
|
||||
|
||||
Args:
|
||||
qx, qy, qz, qw: quaternion components
|
||||
|
||||
Returns:
|
||||
tuple: (roll, pitch, yaw) in radians
|
||||
"""
|
||||
# Roll (x-axis rotation)
|
||||
sinr_cosp = 2.0 * (q[3] * q[0] + q[1] * q[2])
|
||||
cosr_cosp = 1.0 - 2.0 * (q[0] * q[0] + q[1] * q[1])
|
||||
roll = np.arctan2(sinr_cosp, cosr_cosp)
|
||||
|
||||
# Pitch (y-axis rotation)
|
||||
sinp = 2.0 * (q[3] * q[1] - q[2] * q[0])
|
||||
if abs(sinp) >= 1:
|
||||
pitch = np.copysign(np.pi / 2, sinp) # Use 90 degrees if out of range
|
||||
else:
|
||||
pitch = np.arcsin(sinp)
|
||||
|
||||
# Yaw (z-axis rotation)
|
||||
siny_cosp = 2.0 * (q[3] * q[2] + q[0] * q[1])
|
||||
cosy_cosp = 1.0 - 2.0 * (q[1] * q[1] + q[2] * q[2])
|
||||
yaw = np.arctan2(siny_cosp, cosy_cosp)
|
||||
|
||||
return [roll, pitch, yaw]
|
||||
|
||||
# def invese_kinematics_velocity(self, target_position, target_rpy=None,
|
||||
# target_quat=None, initial_guess=None, tool="ee"):
|
||||
# """
|
||||
# Compute the converging velocity (motion direction) of joints based on qp inverse kinematics.
|
||||
#
|
||||
# Args:
|
||||
# target_position: [x, y, z] target position (meters)
|
||||
# target_rpy: [roll, pitch, yaw] target orientation (radians)
|
||||
# target_quat: [x, y, z, w] target orientation as quaternion
|
||||
# initial_guess: Initial joint angles (radians)
|
||||
# tool: the frame name ('scissor', 'camera', 'ee')
|
||||
#
|
||||
# Returns:
|
||||
# joint_velocity: np.array()
|
||||
# """
|
||||
# # Build target SE3 placement
|
||||
# if target_quat is not None:
|
||||
# quat = pin.Quaternion(target_quat[3], target_quat[0],
|
||||
# target_quat[1], target_quat[2])
|
||||
# target_rotation = quat.matrix()
|
||||
# elif target_rpy is not None:
|
||||
# target_rotation = pin.rpy.rpyToMatrix(target_rpy[0],
|
||||
# target_rpy[1],
|
||||
# target_rpy[2])
|
||||
# else:
|
||||
# target_rotation = np.eye(3)
|
||||
#
|
||||
# target_placement = pin.SE3(target_rotation, np.array(target_position))
|
||||
#
|
||||
# # Try multiple initial guesses
|
||||
# initial_guesses = []
|
||||
#
|
||||
# if initial_guess is not None:
|
||||
# initial_guesses.append(initial_guess)
|
||||
# else:
|
||||
# # Try different initial configurations
|
||||
# initial_guesses.append([0.1] * 7) # Zero config
|
||||
# initial_guesses.append([radians(30), radians(45), radians(30),
|
||||
# radians(-45), radians(30), radians(-30), 0])
|
||||
# initial_guesses.append([radians(-30), radians(45), radians(-30),
|
||||
# radians(45), radians(30), radians(30), 0])
|
||||
#
|
||||
# best_solution = None
|
||||
# best_error = float('inf')
|
||||
#
|
||||
# for guess_idx, guess in enumerate(initial_guesses):
|
||||
# q = pin.neutral(self.model)
|
||||
# for i, angle in enumerate(guess):
|
||||
# if i < len(q):
|
||||
# q[i] = np.clip(angle, self.model.lowerPositionLimit[i],
|
||||
# self.model.upperPositionLimit[i])
|
||||
#
|
||||
# # Differential IK with adaptive damping
|
||||
# damping = 0.01
|
||||
# damping_reduction = 0.95
|
||||
# iter_count = 0
|
||||
# prev_error = float('inf')
|
||||
#
|
||||
# ee_frame_id = self.tool_frames[tool]
|
||||
#
|
||||
# J = pin.computeFrameJacobian(
|
||||
# self.model,
|
||||
# self.data,
|
||||
# q,
|
||||
# ee_frame_id,
|
||||
# pin.ReferenceFrame.LOCAL_WORLD_ALIGNED
|
||||
# )
|
||||
#
|
||||
# while iter_count < max_iter:
|
||||
# # Compute forward kinematics
|
||||
#
|
||||
# pin.computeJointJacobians(self.model, self.data, q)
|
||||
# pin.framesForwardKinematics(self.model, self.data, q)
|
||||
#
|
||||
# # Get current end-effector placement
|
||||
#
|
||||
# current_placement = self.data.oMf[ee_frame_id]
|
||||
#
|
||||
# # Compute error
|
||||
# error_SE3 = current_placement.actInv(target_placement)
|
||||
# error_vec = pin.log(error_SE3).vector
|
||||
# error_norm = np.linalg.norm(error_vec)
|
||||
#
|
||||
# if error_norm < tolerance:
|
||||
# joint_angles = q[:7].copy()
|
||||
# fk_result = self.forward_kinematics(joint_angles, tool=tool)
|
||||
# position_error = np.linalg.norm(fk_result['position'] - np.array(target_position))
|
||||
#
|
||||
# if position_error < best_error:
|
||||
# best_error = position_error
|
||||
# best_solution = joint_angles
|
||||
# break
|
||||
#
|
||||
# # Check if error is increasing (diverging)
|
||||
# if error_norm > prev_error * 1.1 and iter_count > 10:
|
||||
# damping = min(1.0, damping * 1.5)
|
||||
# else:
|
||||
# damping = max(0.01, damping * damping_reduction)
|
||||
#
|
||||
# J = pin.getFrameJacobian(
|
||||
# self.model,
|
||||
# self.data,
|
||||
# ee_frame_id,
|
||||
# pin.ReferenceFrame.LOCAL_WORLD_ALIGNED
|
||||
# )
|
||||
#
|
||||
# # =========================
|
||||
# # QP-based IK
|
||||
# # =========================
|
||||
#
|
||||
# H = J.T @ self.W @ J
|
||||
# H += damping * damping * np.eye(7)
|
||||
#
|
||||
# H_triu = sparse.triu(H).tocsc()
|
||||
#
|
||||
# g = -J.T @ self.W @ error_vec
|
||||
#
|
||||
# # -------------------------
|
||||
# # Joint velocity constraints
|
||||
# # -------------------------
|
||||
#
|
||||
# dq_limit = 0.05 # rad per iteration
|
||||
#
|
||||
# lb = -dq_limit * np.ones(7)
|
||||
# ub = dq_limit * np.ones(7)
|
||||
#
|
||||
# # -------------------------
|
||||
# # Joint position constraints
|
||||
# # -------------------------
|
||||
#
|
||||
# q_min_step = self.model.lowerPositionLimit[:7] - q[:7]
|
||||
# q_max_step = self.model.upperPositionLimit[:7] - q[:7]
|
||||
#
|
||||
# lb = np.maximum(lb, q_min_step)
|
||||
# ub = np.minimum(ub, q_max_step)
|
||||
#
|
||||
# # -------------------------
|
||||
# # Solve QP
|
||||
# # ------------------------
|
||||
# # Update solver
|
||||
# self.osqp_solver.update(
|
||||
# Px=H_triu.data,
|
||||
# q=g,
|
||||
# l=lb,
|
||||
# u=ub
|
||||
# )
|
||||
#
|
||||
# # Solve
|
||||
# result = self.osqp_solver.solve()
|
||||
#
|
||||
# if result.info.status != 'solved':
|
||||
# break
|
||||
#
|
||||
# dq = result.x
|
||||
#
|
||||
# if dq is None:
|
||||
# break
|
||||
#
|
||||
# # Apply joint limits with scaling
|
||||
# alpha = 0.5
|
||||
# q = pin.integrate(self.model, q, alpha * dq)
|
||||
#
|
||||
# prev_error = error_norm
|
||||
# iter_count += 1
|
||||
#
|
||||
# if best_solution is not None:
|
||||
# return best_solution, True, best_error
|
||||
# else:
|
||||
# return None, False, None
|
||||
|
||||
def compute_jacobian(self, joint_angles, tool="ee"):
|
||||
"""Compute geometric Jacobian (6x7)"""
|
||||
q = pin.neutral(self.model)
|
||||
for i, angle in enumerate(joint_angles):
|
||||
q[i] = angle
|
||||
|
||||
pin.forwardKinematics(self.model, self.data, q)
|
||||
pin.updateFramePlacements(self.model, self.data)
|
||||
ee_frame_id = self.tool_frames[tool]
|
||||
J = pin.computeFrameJacobian(self.model, self.data, q, ee_frame_id)
|
||||
|
||||
return J
|
||||
|
||||
def get_subchain_jacobian(self,
|
||||
joint_angles,
|
||||
frame_names
|
||||
):
|
||||
|
||||
q = pin.neutral(self.model)
|
||||
|
||||
all_active_joints = self.get_active_joints_from_frame(frame_names)
|
||||
|
||||
for i in range(7):
|
||||
q[i] = joint_angles[i]
|
||||
|
||||
pin.forwardKinematics(self.model, self.data, q)
|
||||
pin.updateFramePlacements(self.model, self.data)
|
||||
pin.computeJointJacobians(self.model, self.data, q)
|
||||
|
||||
Js = []
|
||||
|
||||
for frame_name, active_joints in zip(frame_names, all_active_joints):
|
||||
frame_id = self.model.getFrameId(frame_name)
|
||||
|
||||
J = pin.getFrameJacobian(
|
||||
self.model,
|
||||
self.data,
|
||||
frame_id,
|
||||
pin.ReferenceFrame.LOCAL
|
||||
)
|
||||
Js.append(J[:, active_joints])
|
||||
|
||||
return Js
|
||||
|
||||
def get_active_joints_from_frame(self, frame_names):
|
||||
"""
|
||||
Return active joint indices affecting a frame.
|
||||
|
||||
Example:
|
||||
frame_name='link_4'
|
||||
-> [0,1,2,3]
|
||||
"""
|
||||
all_active_joint_ids = []
|
||||
for frame_name in frame_names:
|
||||
frame_id = self.model.getFrameId(frame_name)
|
||||
|
||||
# Parent joint of this frame
|
||||
joint_id = self.model.frames[frame_id].parentJoint
|
||||
|
||||
print(f'frame_id = {frame_id}, and joint_id = {joint_id}')
|
||||
|
||||
active_joint_ids = []
|
||||
|
||||
|
||||
# Traverse upward to root
|
||||
while joint_id > 0:
|
||||
# Pinocchio joint indexing:
|
||||
# universe joint = 0
|
||||
# robot joints start from 1
|
||||
|
||||
active_joint_ids.append(joint_id - 1)
|
||||
|
||||
# Move to parent joint
|
||||
joint_id = self.model.parents[joint_id]
|
||||
|
||||
# Reverse so order becomes base -> tip
|
||||
active_joint_ids.reverse()
|
||||
all_active_joint_ids.append(active_joint_ids)
|
||||
|
||||
return all_active_joint_ids
|
||||
|
||||
def plan_cartesian_trajectory(self, start_pos, end_pos,
|
||||
start_rpy=None, end_rpy=None,
|
||||
num_steps=20, tool='ee'):
|
||||
"""
|
||||
Plan a Cartesian trajectory with IK for each waypoint.
|
||||
"""
|
||||
# Get current end-effector pose if start_rpy not provided
|
||||
if start_rpy is None:
|
||||
# Try to find a valid starting configuration
|
||||
test_angles = [0.1] * 7
|
||||
fk_test = self.forward_kinematics(test_angles,tool=tool)
|
||||
start_rpy = fk_test['rpy']
|
||||
|
||||
if end_rpy is None:
|
||||
end_rpy = start_rpy
|
||||
|
||||
# First, check if target is reachable
|
||||
print(f"\nChecking if target is reachable...")
|
||||
target_pos = end_pos
|
||||
target_rpy = end_rpy
|
||||
|
||||
test_solution, success, error = self.inverse_kinematics(
|
||||
target_pos, target_rpy=target_rpy, initial_guess=[0.1] * 7, max_iter=500, tool=tool
|
||||
)
|
||||
|
||||
if not success:
|
||||
print(f"Warning: Target may be unreachable or difficult to reach")
|
||||
print(f"Trying with relaxed tolerance...")
|
||||
|
||||
# Initial guess for IK (start with zero configuration)
|
||||
current_angles = [0.1] * 7
|
||||
trajectory = []
|
||||
|
||||
print(f"\nPlanning trajectory from ({start_pos[0]:.2f}, {start_pos[1]:.2f}, {start_pos[2]:.2f})")
|
||||
print(f"To ({end_pos[0]:.2f}, {end_pos[1]:.2f}, {end_pos[2]:.2f})")
|
||||
print("-" * 60)
|
||||
|
||||
for i in range(num_steps + 1):
|
||||
t = i / num_steps
|
||||
|
||||
# Interpolate position
|
||||
pos = [
|
||||
start_pos[0] + t * (end_pos[0] - start_pos[0]),
|
||||
start_pos[1] + t * (end_pos[1] - start_pos[1]),
|
||||
start_pos[2] + t * (end_pos[2] - start_pos[2])
|
||||
]
|
||||
|
||||
# Interpolate orientation
|
||||
rpy = [
|
||||
start_rpy[0] + t * (end_rpy[0] - start_rpy[0]),
|
||||
start_rpy[1] + t * (end_rpy[1] - start_rpy[1]),
|
||||
start_rpy[2] + t * (end_rpy[2] - start_rpy[2])
|
||||
]
|
||||
|
||||
# Compute IK
|
||||
joint_angles, success, error = self.inverse_kinematics(
|
||||
pos, target_rpy=rpy, initial_guess=current_angles, max_iter=300, tool=tool
|
||||
)
|
||||
|
||||
if not success:
|
||||
print(f" Waypoint {i}: IK failed!")
|
||||
break
|
||||
|
||||
# Verify
|
||||
fk_verify = self.forward_kinematics(joint_angles, tool=tool)
|
||||
|
||||
trajectory.append({
|
||||
'step': i,
|
||||
't': t,
|
||||
'position': pos,
|
||||
'rpy': rpy,
|
||||
'joint_angles': joint_angles,
|
||||
'actual_position': fk_verify['position'],
|
||||
'error': error
|
||||
})
|
||||
|
||||
# Update current angles for next iteration
|
||||
current_angles = joint_angles
|
||||
|
||||
if i % 5 == 0 or i == num_steps:
|
||||
print(f" Waypoint {i:3d}: pos=({pos[0]:.3f}, {pos[1]:.3f}, {pos[2]:.3f}), "
|
||||
f"error={error:.6f}m")
|
||||
|
||||
return trajectory
|
||||
|
||||
|
||||
|
||||
def main():
|
||||
"""Main test function"""
|
||||
|
||||
|
||||
rm75 = KinematicsSolver()
|
||||
|
||||
# Test 1: Forward Kinematics
|
||||
print("\n1. Forward Kinematics Test")
|
||||
print("-" * 40)
|
||||
|
||||
tool_name = "scissor"
|
||||
joint_angles_zero = [0.1] * 7
|
||||
fk_result = rm75.forward_kinematics(joint_angles_zero, tool=tool_name)
|
||||
|
||||
print(f"Init configuration:")
|
||||
print(f" Position: ({fk_result['position'][0]:.3f}, "
|
||||
f"{fk_result['position'][1]:.3f}, {fk_result['position'][2]:.3f}) m")
|
||||
|
||||
# Test 2: Inverse Kinematics with more reachable target
|
||||
print("\n2. Inverse Kinematics Test")
|
||||
print("-" * 40)
|
||||
|
||||
# Try a simpler target first
|
||||
target_pos = [0.3, 0.2, 0.4] # More reachable position
|
||||
target_rpy = [0.0, 0.0, radians(45)] # Simpler orientation
|
||||
|
||||
print(f"Target: ({target_pos[0]:.3f}, {target_pos[1]:.3f}, {target_pos[2]:.3f}) m")
|
||||
|
||||
import time
|
||||
init_joints = [0.2] * 7
|
||||
time0 = time.time()
|
||||
for ii in range(100):
|
||||
joint_solution, success, error = rm75.inverse_kinematics(
|
||||
target_pos, target_rpy=target_rpy, initial_guess=init_joints,
|
||||
max_iter=500, debug=False, tool=tool_name
|
||||
)
|
||||
time1 = time.time()
|
||||
print(f"Time: {time1 - time0}")
|
||||
|
||||
if success:
|
||||
print(f"✓ Solution found! Error: {error:.6f} m")
|
||||
for i, angle in enumerate(joint_solution):
|
||||
print(f" Joint {i + 1}: {degrees(angle):7.2f}°")
|
||||
|
||||
# Verify
|
||||
fk_verify = rm75.forward_kinematics(joint_solution,tool=tool_name)
|
||||
print(
|
||||
f" Position: ({fk_verify['position'][0]:.3f}, {fk_verify['position'][1]:.3f}, {fk_verify['position'][2]:.3f}) m")
|
||||
else:
|
||||
print("✗ IK failed to find a solution!")
|
||||
|
||||
# Test 3: Jacobian
|
||||
print("\n3. Jacobian Matrix")
|
||||
print("-" * 40)
|
||||
|
||||
J = rm75.compute_jacobian(joint_angles_zero, tool=tool_name)
|
||||
print(f"Jacobian shape: {J.shape}")
|
||||
for i in range(min(3, J.shape[0])):
|
||||
row_str = " ".join([f"{J[i, j]:7.3f}" for j in range(7)])
|
||||
print(f" Row {i + 1}: {row_str}")
|
||||
|
||||
# Test 4: Trajectory Planning with reachable positions
|
||||
print("\n4. Cartesian Trajectory Planning")
|
||||
print("-" * 40)
|
||||
|
||||
start_pos = [0.3, 0.0, 0.4] # Start position
|
||||
end_pos = [0.3, 0.0, 0.55] # End position (smaller movement)
|
||||
|
||||
fk0 = rm75.forward_kinematics([0.1] * 7, tool=tool_name)
|
||||
|
||||
trajectory = rm75.plan_cartesian_trajectory(
|
||||
start_pos,
|
||||
end_pos,
|
||||
start_rpy=fk0['rpy'],
|
||||
end_rpy=[
|
||||
fk0['rpy'][0] + radians(10),
|
||||
fk0['rpy'][1],
|
||||
fk0['rpy'][2]
|
||||
],
|
||||
num_steps=10,
|
||||
tool=tool_name
|
||||
)
|
||||
|
||||
if trajectory:
|
||||
print(f"\n✓ Generated {len(trajectory)} waypoints")
|
||||
|
||||
if success:
|
||||
print("✓ Inverse kinematics working (with simplified target)")
|
||||
else:
|
||||
print("⚠ Inverse kinematics may need tuning - try different targets")
|
||||
|
||||
|
||||
print("\n" + "=" * 60)
|
||||
print(f'test subchain Jacobian, for future obstacle avoidance')
|
||||
frame_names = [
|
||||
"link_2",
|
||||
"link_4",
|
||||
"link_7"
|
||||
]
|
||||
Js_sub = rm75.get_subchain_jacobian(
|
||||
joint_angles=joint_angles_zero,
|
||||
frame_names=frame_names
|
||||
)
|
||||
print(f'Js_sub: {Js_sub}')
|
||||
|
||||
return rm75, trajectory
|
||||
|
||||
|
||||
if __name__ == "__main__":
|
||||
rm75, trajectory = main()
|
||||
|
||||
print("\n" + "=" * 60)
|
||||
print("All tests completed!")
|
||||
print("=" * 60)
|
||||
@@ -1,133 +0,0 @@
|
||||
|
||||
from Robotic_Arm.rm_robot_interface import *
|
||||
import numpy as np
|
||||
import math
|
||||
|
||||
class rm75_kine_api():
|
||||
def __init__(self):
|
||||
# ---------- rm75 official algorithm -----------
|
||||
print(f'------- the realman official kinematic initialising -------')
|
||||
arm_model = rm_robot_arm_model_e.RM_MODEL_RM_75_E # RM_65 Robotic arm
|
||||
force_type = rm_force_type_e.RM_MODEL_RM_B_E # Standard version
|
||||
# Initialize the robotic arm model and sensor type in the algorithm
|
||||
self.robot_kine_rm = Algo(arm_model, force_type)
|
||||
|
||||
self.cfg_j_limit()
|
||||
|
||||
self.work_frames = {
|
||||
'work': rm_frame_t(frame_name="work", pose=(0.0, 0.0, 0.0, 0.0, 0, 0.0), payload=1, x=0, y=0, z=0),
|
||||
}
|
||||
|
||||
self.tool_name = "no_tool"
|
||||
self.work_name = "work"
|
||||
|
||||
def cfg_j_limit(self, min_j=None, max_j=None, rad_flag = True):
|
||||
if max_j is None:
|
||||
max_j = np.array([3.14159, 2.2689, 3.14159, 2.3562, 3.14159, 2.234, 3.14159])
|
||||
if min_j is None:
|
||||
min_j = np.array([ -3.14159, -2.2689, -3.14159, -2.3562, -3.14159, -2.234, -3.14159 ])
|
||||
|
||||
max_j = np.array(max_j)
|
||||
min_j = np.array(min_j)
|
||||
if rad_flag:
|
||||
self.robot_kine_rm.rm_algo_set_joint_max_limit((max_j * 180 / math.pi).tolist())
|
||||
self.robot_kine_rm.rm_algo_set_joint_min_limit((min_j * 180 / math.pi).tolist())
|
||||
else:
|
||||
self.robot_kine_rm.rm_algo_set_joint_max_limit(max_j.tolist())
|
||||
self.robot_kine_rm.rm_algo_set_joint_min_limit(min_j.tolist())
|
||||
|
||||
def cfg_work_frame(self , frame_name):
|
||||
self.robot_kine_rm.rm_algo_set_workframe(self.work_frames[frame_name])
|
||||
|
||||
def get_work_frame(self):
|
||||
return self.robot_kine_rm.rm_algo_get_curr_workframe()
|
||||
|
||||
def cfg_tool_frame(self, frame_name ):
|
||||
self.robot_kine_rm.rm_algo_set_toolframe(self.tool_frames[frame_name])
|
||||
|
||||
def get_tool_frame(self):
|
||||
return self.robot_kine_rm.rm_algo_get_curr_toolframe()
|
||||
|
||||
def quaternion_to_euler(self, q):
|
||||
"""
|
||||
Convert quaternion to Euler angles (roll, pitch, yaw)
|
||||
|
||||
Args:
|
||||
qx, qy, qz, qw: quaternion components
|
||||
|
||||
Returns:
|
||||
tuple: (roll, pitch, yaw) in radians
|
||||
"""
|
||||
# Roll (x-axis rotation)
|
||||
sinr_cosp = 2.0 * (q[3] * q[0] + q[1] * q[2])
|
||||
cosr_cosp = 1.0 - 2.0 * (q[0] * q[0] + q[1] * q[1])
|
||||
roll = np.arctan2(sinr_cosp, cosr_cosp)
|
||||
|
||||
# Pitch (y-axis rotation)
|
||||
sinp = 2.0 * (q[3] * q[1] - q[2] * q[0])
|
||||
if abs(sinp) >= 1:
|
||||
pitch = np.copysign(np.pi / 2, sinp) # Use 90 degrees if out of range
|
||||
else:
|
||||
pitch = np.arcsin(sinp)
|
||||
|
||||
# Yaw (z-axis rotation)
|
||||
siny_cosp = 2.0 * (q[3] * q[2] + q[0] * q[1])
|
||||
cosy_cosp = 1.0 - 2.0 * (q[1] * q[1] + q[2] * q[2])
|
||||
yaw = np.arctan2(siny_cosp, cosy_cosp)
|
||||
|
||||
return [roll, pitch, yaw]
|
||||
|
||||
def add_tool_frames(self, dict_frames):
|
||||
self.tool_frames = {}
|
||||
for tool_name in dict_frames:
|
||||
tool_attr = dict_frames[tool_name]
|
||||
position = tool_attr[0][0:3]
|
||||
rotationXYZ = self.quaternion_to_euler(tool_attr[0][3:7])
|
||||
f = rm_frame_t(frame_name=tool_name, pose=(position[0], position[1], position[2], rotationXYZ[0], rotationXYZ[1], rotationXYZ[2]), payload=1, x=0, y=0, z=0)
|
||||
|
||||
self.tool_frames.update({tool_name:f})
|
||||
|
||||
def forward_kinematics(self, joint_angles, flag = 1 , tool="omnipic", work="work"):
|
||||
'''
|
||||
:param joint_angles: list of joint values, in rad
|
||||
:param flag: 0: return list [x,y,z,w,x,y,z]. 1: return list [x,y,z,rx,ry,rz]
|
||||
:param return: [x,y,z,rx,ry,rz], m & rad
|
||||
'''
|
||||
if tool != self.tool_name:
|
||||
self.tool_name = tool
|
||||
self.cfg_tool_frame(tool)
|
||||
if work != self.work_name:
|
||||
self.work_name = work
|
||||
self.cfg_work_frame(work)
|
||||
|
||||
return self.robot_kine_rm.rm_algo_forward_kinematics(joint=[q_s*180/math.pi for q_s in joint_angles] , flag=flag)
|
||||
|
||||
def inverse_kinematics(self, target_position, target_rpy=None, initial_guess=None, tool="omnipic", work="work"):
|
||||
'''
|
||||
:param target_position: list of position values, m
|
||||
:param target_rpy: list of rpy values, rad
|
||||
:param initial_guess: initial guess of angles, rad
|
||||
:param tool: tool name, refer to self.tool_frames
|
||||
:param work: work name, refer to self.work_frames
|
||||
|
||||
return ret: state of ik calculation, 0:success, -2: out of workspace
|
||||
[q_]: the ik calculated angles for joints, rad
|
||||
'''
|
||||
if tool != self.tool_name:
|
||||
self.tool_name = tool
|
||||
self.cfg_tool_frame(tool)
|
||||
if work != self.work_name:
|
||||
self.work_name = work
|
||||
self.cfg_work_frame(work)
|
||||
|
||||
target = target_position + target_rpy
|
||||
|
||||
if initial_guess is not None:
|
||||
q_ref = [ 180/math.pi * ig for ig in initial_guess ]
|
||||
else:
|
||||
q_ref = [0.0, 110.0, 20.0, 40.0, 30.0, 180.0, 20.0]
|
||||
ret, phi = self.robot_kine_rm.rm_algo_calculate_arm_angle_from_config_rm75(q_ref)
|
||||
params = rm_inverse_kinematics_params_t(q_ref,
|
||||
target, 1)
|
||||
ret, q_out = self.robot_kine_rm.rm_algo_inverse_kinematics_rm75_for_arm_angle(params, phi)
|
||||
return ret, [ q/180*math.pi for q in q_out]
|
||||
@@ -1,297 +0,0 @@
|
||||
#!/usr/bin/env python3
|
||||
"""
|
||||
Pure Position Control for MuJoCo - No velocity commands, no forces
|
||||
Direct joint position control with smoothing
|
||||
"""
|
||||
|
||||
import mujoco
|
||||
import mujoco.viewer
|
||||
import numpy as np
|
||||
import threading
|
||||
import time
|
||||
from pathlib import Path
|
||||
|
||||
|
||||
class MuJoCoPositionController:
|
||||
"""
|
||||
Pure position control - directly sets joint positions
|
||||
No velocity commands, no forces - completely stable
|
||||
"""
|
||||
|
||||
def __init__(self, urdf_path="./urdf_rm75/RM75-B.urdf", smoothness=0.05, enable_viewer=True):
|
||||
"""
|
||||
Args:
|
||||
urdf_path: Path to URDF file
|
||||
smoothness: Motion smoothness (0.02=very smooth, 0.1=fast)
|
||||
enable_viewer: Show MuJoCo viewer
|
||||
"""
|
||||
# Load model
|
||||
self.model = mujoco.MjModel.from_xml_path(urdf_path)
|
||||
self.data = mujoco.MjData(self.model)
|
||||
|
||||
self.time_interval = 0.02
|
||||
|
||||
print(f'time interval: {self.model.opt.timestep}')
|
||||
|
||||
# Robot info
|
||||
self.n_joints = self.model.njnt
|
||||
|
||||
# Get joint limits
|
||||
self.joint_lower_limits = []
|
||||
self.joint_upper_limits = []
|
||||
for i in range(self.n_joints):
|
||||
self.joint_lower_limits.append(self.model.jnt_range[i, 0])
|
||||
self.joint_upper_limits.append(self.model.jnt_range[i, 1])
|
||||
|
||||
print(f"Loaded robot: {self.n_joints} joints")
|
||||
for i in range(self.n_joints):
|
||||
print(
|
||||
f" {self.model.joint(i).name}: limit [{self.joint_lower_limits[i]:.2f}, {self.joint_upper_limits[i]:.2f}]")
|
||||
|
||||
# Target joint angles (in radians)
|
||||
self.target_joints = self.data.qpos[:self.n_joints].copy()
|
||||
|
||||
# Smoothing factor (0-1, lower = smoother)
|
||||
self.smoothness = smoothness
|
||||
|
||||
# Thread safety
|
||||
self.command_lock = threading.Lock()
|
||||
self.feedback_lock = threading.Lock()
|
||||
self.current_feedback_joint = self.data.qpos[:self.n_joints].copy()
|
||||
|
||||
self.max_ang_inc = 0.02
|
||||
|
||||
# Control flags
|
||||
self.running = False
|
||||
self.simulation_thread = None
|
||||
|
||||
# Viewer
|
||||
self.viewer = None
|
||||
if enable_viewer:
|
||||
try:
|
||||
self.viewer = mujoco.viewer.launch_passive(self.model, self.data)
|
||||
print("Viewer launched")
|
||||
except Exception as e:
|
||||
print(f"Viewer warning: {e}")
|
||||
self.start()
|
||||
|
||||
def start(self):
|
||||
"""Start the simulation thread"""
|
||||
if self.running:
|
||||
return
|
||||
|
||||
self.running = True
|
||||
self.simulation_thread = threading.Thread(target=self._simulation_loop, daemon=True)
|
||||
self.simulation_thread.start()
|
||||
print("Simulation thread started")
|
||||
|
||||
def stop(self):
|
||||
"""Stop the simulation thread"""
|
||||
self.running = False
|
||||
if self.simulation_thread:
|
||||
self.simulation_thread.join(timeout=2.0)
|
||||
if self.viewer:
|
||||
self.viewer.close()
|
||||
print("Simulation stopped")
|
||||
|
||||
def send_command(self, joint_positions):
|
||||
"""
|
||||
Send target joint positions
|
||||
|
||||
Args:
|
||||
joint_positions: Array of target joint angles (radians)
|
||||
"""
|
||||
cmd = np.array(joint_positions[:self.n_joints], dtype=np.float64)
|
||||
|
||||
# Apply joint limits
|
||||
for i in range(self.n_joints):
|
||||
cmd[i] = np.clip(cmd[i], self.joint_lower_limits[i], self.joint_upper_limits[i])
|
||||
|
||||
with self.command_lock:
|
||||
self.target_joints = cmd
|
||||
|
||||
def get_feedback(self):
|
||||
"""Get current joint positions"""
|
||||
with self.feedback_lock:
|
||||
return self.current_feedback_joint.copy()
|
||||
|
||||
def get_target(self):
|
||||
"""Get current target positions"""
|
||||
with self.command_lock:
|
||||
return self.target_joints.copy()
|
||||
|
||||
def _simulation_loop(self):
|
||||
"""
|
||||
Main simulation loop - PURE POSITION CONTROL
|
||||
No velocity commands, no forces - just direct position setting
|
||||
"""
|
||||
last_time = time.time()
|
||||
|
||||
# For smooth interpolation
|
||||
current_joints = self.data.qpos[:self.n_joints].copy()
|
||||
|
||||
while self.running:
|
||||
# Get target command
|
||||
with self.command_lock:
|
||||
target = self.target_joints.copy()
|
||||
|
||||
# Get current positions
|
||||
current_joints = self.data.qpos[:self.n_joints].copy()
|
||||
|
||||
# Smooth interpolation toward target
|
||||
# This creates natural motion without velocity commands
|
||||
alpha = self.smoothness
|
||||
|
||||
next_joints = current_joints + np.clip(alpha * (target - current_joints) , -self.max_ang_inc, self.max_ang_inc)
|
||||
|
||||
# DIRECT POSITION CONTROL - Set joint positions
|
||||
self.data.qpos[:self.n_joints] = next_joints
|
||||
|
||||
# IMPORTANT: Set velocities to zero to prevent physics from moving joints
|
||||
# This ensures pure kinematic control
|
||||
self.data.qvel[:self.n_joints] = 0
|
||||
|
||||
# Step physics (this will apply gravity, collisions, etc. to other bodies)
|
||||
mujoco.mj_step(self.model, self.data)
|
||||
|
||||
# After step, ensure our joint positions are maintained
|
||||
# (Physics might have altered them slightly)
|
||||
self.data.qpos[:self.n_joints] = next_joints
|
||||
self.data.qvel[:self.n_joints] = 0
|
||||
|
||||
# Update feedback
|
||||
with self.feedback_lock:
|
||||
self.current_feedback_joint = self.data.qpos[:self.n_joints].copy()
|
||||
|
||||
# Sync viewer
|
||||
if self.viewer:
|
||||
self.viewer.sync()
|
||||
|
||||
# Maintain real-time speed
|
||||
elapsed = time.time() - last_time
|
||||
sleep_time = self.time_interval - elapsed
|
||||
if sleep_time > 0:
|
||||
time.sleep(sleep_time)
|
||||
last_time = time.time()
|
||||
|
||||
def move_to_joints(self, target, duration=1.0):
|
||||
"""
|
||||
Move to target joints over specified duration
|
||||
|
||||
Args:
|
||||
target: Target joint joints
|
||||
duration: Time to complete movement (seconds)
|
||||
"""
|
||||
start_js = self.get_feedback()
|
||||
end_js = np.array(target[:self.n_joints])
|
||||
|
||||
# Apply limits
|
||||
for i in range(self.n_joints):
|
||||
end_js[i] = np.clip(end_js[i], self.joint_lower_limits[i], self.joint_upper_limits[i])
|
||||
|
||||
n_steps = int(duration / self.time_interval)
|
||||
|
||||
print(f" Moving over {duration}s ({n_steps} steps)")
|
||||
|
||||
for step in range(n_steps):
|
||||
alpha = (step + 1) / n_steps
|
||||
# Use easing for smoother motion
|
||||
ease_alpha = 1 - (1 - alpha) ** 2 # Quadratic ease-out
|
||||
current_target = start_js + ease_alpha * (end_js - start_js)
|
||||
self.send_command(current_target)
|
||||
time.sleep(self.time_interval)
|
||||
|
||||
# Ensure exact target
|
||||
self.send_command(end_js)
|
||||
time.sleep(0.1)
|
||||
|
||||
def wait_until_reached(self, tolerance=0.01, timeout=10.0):
|
||||
"""
|
||||
Wait until robot reaches target position
|
||||
|
||||
Args:
|
||||
tolerance: Position error tolerance (radians)
|
||||
timeout: Maximum wait time (seconds)
|
||||
"""
|
||||
start_time = time.time()
|
||||
|
||||
while time.time() - start_time < timeout:
|
||||
current = self.get_feedback()
|
||||
target = self.get_target()
|
||||
error = np.max(np.abs(target - current))
|
||||
|
||||
if error < tolerance:
|
||||
return True
|
||||
|
||||
time.sleep(0.01)
|
||||
|
||||
return False
|
||||
|
||||
def print_state(self):
|
||||
"""Print current robot state"""
|
||||
joints = self.get_feedback()
|
||||
target = self.get_target()
|
||||
print("Current joints (rad):", [f"{p:.3f}" for p in joints], "...")
|
||||
print("Target joints (rad): ", [f"{t:.3f}" for t in target], "...")
|
||||
|
||||
|
||||
# Demo
|
||||
def demo_position_control():
|
||||
"""Demonstrate pure position control"""
|
||||
|
||||
urdf_path = "/home/zl/Downloads/urdf_rm75/RM75-B.urdf"
|
||||
|
||||
if not Path(urdf_path).exists():
|
||||
print(f"Error: URDF not found at {urdf_path}")
|
||||
return
|
||||
|
||||
print("=" * 60)
|
||||
print("Pure Position Control Demo")
|
||||
print("=" * 60)
|
||||
|
||||
# Create controller
|
||||
robot = MuJoCoPositionController(urdf_path, smoothness=0.05, enable_viewer=True)
|
||||
robot.start()
|
||||
time.sleep(1)
|
||||
|
||||
print("\n[Test 1] Move joint 1 to 45 degrees")
|
||||
robot.send_command([0.785, 0, 0, 0, 0, 0, 0])
|
||||
robot.wait_until_reached()
|
||||
robot.print_state()
|
||||
time.sleep(0.5)
|
||||
|
||||
print("\n[Test 2] Move joint 2 to -30 degrees")
|
||||
robot.send_command([0, -0.524, 0, 0, 0, 0, 0])
|
||||
robot.wait_until_reached()
|
||||
robot.print_state()
|
||||
time.sleep(0.5)
|
||||
|
||||
print("\n[Test 3] Move multiple joints simultaneously")
|
||||
robot.send_command([0.5, -0.4, 0.3, 0.2, 0.1, 0, 0])
|
||||
robot.wait_until_reached()
|
||||
robot.print_state()
|
||||
time.sleep(0.5)
|
||||
|
||||
print("\n[Test 4] Return home")
|
||||
robot.send_command([0, 0, 0, 0, 0, 0, 0])
|
||||
robot.wait_until_reached()
|
||||
robot.print_state()
|
||||
|
||||
print("\n" + "=" * 60)
|
||||
print("✓ All tests passed! Robot is stable and controllable.")
|
||||
print("=" * 60)
|
||||
print("\nInteractive mode - close viewer to exit")
|
||||
|
||||
try:
|
||||
while robot.viewer and robot.viewer.is_running():
|
||||
time.sleep(0.1)
|
||||
except KeyboardInterrupt:
|
||||
pass
|
||||
|
||||
robot.stop()
|
||||
|
||||
|
||||
|
||||
|
||||
if __name__ == "__main__":
|
||||
demo_position_control()
|
||||
@@ -1,739 +0,0 @@
|
||||
"""
|
||||
RM75-B comfortable workspace evaluator.
|
||||
|
||||
You provide:
|
||||
- URDF file path '/home/zl/Downloads/urdf_rm75/RM75-B.urdf'
|
||||
- your own IK solver inside solve_ik_user()
|
||||
|
||||
This script computes:
|
||||
- IK success rate
|
||||
- joint-limit comfort
|
||||
- manipulability
|
||||
- singularity / condition number score
|
||||
- final comfort score
|
||||
|
||||
Recommended install:
|
||||
pip install numpy scipy urdfpy pandas matplotlib tqdm
|
||||
|
||||
Optional:
|
||||
pip install plotly
|
||||
"""
|
||||
|
||||
import numpy as np
|
||||
import pandas as pd
|
||||
import matplotlib.pyplot as plt
|
||||
|
||||
from tqdm import tqdm
|
||||
from scipy.spatial.transform import Rotation as R
|
||||
from urdfpy import URDF
|
||||
|
||||
import sys
|
||||
from pathlib import Path
|
||||
|
||||
# 1. Get the absolute path of the directory containing this current script
|
||||
current_dir = Path(__file__).resolve().parent
|
||||
|
||||
# 2. Get the parent (upper) directory
|
||||
parent_dir = current_dir.parent
|
||||
|
||||
# 3. Add the parent directory to the system path
|
||||
sys.path.insert(0, str(parent_dir))
|
||||
|
||||
from rm75_kine_qp import KinematicsSolver as kine_qp
|
||||
from rm75_kine_rm import rm75_kine_api as kine_rm
|
||||
from rm75_mjc import MuJoCoPositionController
|
||||
from Robotic_Arm.rm_robot_interface import *
|
||||
|
||||
import time
|
||||
from math import radians, degrees, pi, cos, sin
|
||||
|
||||
|
||||
# pose expression of tool-tip in end-effector, x y z quatx quaty quatz quatw
|
||||
# load: kg, mass_center_x in ee frame: m, y, z, then last threes are for filling
|
||||
tools_in_ee = {
|
||||
'scissor': np.array([[0.0, 0.0, 0.19, 0.0, 0.0, 0.0, 1.0],[0.66, 0.0, 0.0, 0.06, 0.0, 0.0, 0.0]],dtype=np.float64),
|
||||
'omnipic': np.array([[0.0, 0.0, 0.16, 0.0, 0.0, 0.0, 1.0],[0.43, 0.0, 0.0, 0.06, 0.0, 0.0, 0.0]],dtype=np.float64),
|
||||
'minisci': np.array([[0.0, 0.0, 0.19, 0.0, 0.0, 0.0, 1.0],[0.46, 0.0, 0.0, 0.06, 0.0, 0.0, 0.0]],dtype=np.float64),
|
||||
'no_tool': np.array([[0.0, 0.0, 0.0, 0.0, 0.0, 0.0, 1.0],[0.0, 0.0, 0.0, 0.0, 0.0, 0.0, 0.0]],dtype=np.float64),
|
||||
}
|
||||
|
||||
# joint limit
|
||||
# ub = np.array([150.0, 110.0, 170.0, 130, 175.0, 125.0, 179.0]) / 180 * pi
|
||||
# lb = np.array([-150.0, -30.0, -170.0, -130, -175.0, -125.0, -179.0]) / 180 * pi
|
||||
#
|
||||
#
|
||||
ub = np.array([179.0, 129.0, 179.0, 134, 179.0, 127.0, 359.0])/180*pi
|
||||
lb = -ub
|
||||
|
||||
tool_name = "no_tool"
|
||||
|
||||
# ----------- rm75 qp based kine ------------
|
||||
robot_kine_qp = kine_qp(urdf_path='/home/zl/Downloads/urdf_rm75/RM75-B.urdf', mesh_dir='/home/zl/Downloads/urdf_rm75')
|
||||
robot_kine_qp.add_tool_frames(tools_in_ee)
|
||||
robot_kine_qp.cfg_j_limit(min_j=lb, max_j=ub, rad_flag=True)
|
||||
|
||||
# ---------- rm75 official algorithm -----------
|
||||
robot_kine_rm = kine_rm()
|
||||
robot_kine_rm.add_tool_frames(tools_in_ee)
|
||||
robot_kine_rm.cfg_j_limit(min_j=lb, max_j=ub, rad_flag=True)
|
||||
|
||||
|
||||
|
||||
# ============================================================
|
||||
# 1. USER SETTINGS
|
||||
# ============================================================
|
||||
|
||||
URDF_PATH = '/home/zl/Downloads/urdf_rm75/RM75-B.urdf'
|
||||
|
||||
BASE_LINK = "base_link"
|
||||
TCP_LINK = "link_7"
|
||||
|
||||
JOINT_NAMES = [
|
||||
"joint_1",
|
||||
"joint_2",
|
||||
"joint_3",
|
||||
"joint_4",
|
||||
"joint_5",
|
||||
"joint_6",
|
||||
"joint_7",
|
||||
]
|
||||
|
||||
# Cartesian workspace grid, in meters.
|
||||
# Adjust according to your robot placement and task.
|
||||
X_RANGE = (-0.25, 0.6)
|
||||
Y_RANGE = (-0.25, 0.6)
|
||||
Z_RANGE = (0.1, 0.6)
|
||||
|
||||
GRID_RESOLUTION = 0.1 # 5 cm. Use 0.02 for finer but slower.
|
||||
|
||||
# Comfort thresholds
|
||||
MIN_JOINT_MARGIN = 0.05 # 15% away from joint limits
|
||||
MAX_CONDITION_NUMBER = 150.0
|
||||
MIN_MANIPULABILITY_RATIO = 0.10
|
||||
|
||||
# Scoring weights
|
||||
WEIGHT_IK_SUCCESS = 0.70
|
||||
WEIGHT_JOINT_LIMIT = 0.10
|
||||
WEIGHT_MANIPULABILITY = 0.1
|
||||
WEIGHT_SINGULARITY = 0.1
|
||||
|
||||
# Numerical Jacobian settings
|
||||
JACOBIAN_EPS = 1e-5
|
||||
|
||||
|
||||
|
||||
# ============================================================
|
||||
# 2. TASK ORIENTATION SAMPLING
|
||||
# ============================================================
|
||||
|
||||
def make_task_orientations(num_orientations=60, seed=1):
|
||||
"""
|
||||
Random orientation sampling using RM's Euler convention:
|
||||
|
||||
R = Rz @ Ry @ Rx
|
||||
|
||||
Note:
|
||||
This samples Euler angles randomly.
|
||||
It is useful, but not perfectly uniform over SO(3).
|
||||
"""
|
||||
|
||||
rng = np.random.default_rng(seed)
|
||||
|
||||
orientations = []
|
||||
|
||||
for _ in range(num_orientations):
|
||||
rx = rng.uniform(-np.pi, np.pi)
|
||||
ry = rng.uniform(-np.pi / 2.0, np.pi / 2.0)
|
||||
rz = rng.uniform(-np.pi, np.pi)
|
||||
|
||||
orientations.append([rx, ry, rz])
|
||||
|
||||
return orientations
|
||||
|
||||
#
|
||||
# def euler_angles_to_rotation_matrix(rx, ry, rz):
|
||||
# """
|
||||
# Official RM convention:
|
||||
# R = Rz @ Ry @ Rx
|
||||
# This matches scipy:
|
||||
# Rotation.from_euler("xyz", [rx, ry, rz]).as_matrix()
|
||||
# """
|
||||
# Rx = np.array([
|
||||
# [1, 0, 0],
|
||||
# [0, np.cos(rx), -np.sin(rx)],
|
||||
# [0, np.sin(rx), np.cos(rx)]
|
||||
# ])
|
||||
#
|
||||
# Ry = np.array([
|
||||
# [ np.cos(ry), 0, np.sin(ry)],
|
||||
# [0, 1, 0],
|
||||
# [-np.sin(ry), 0, np.cos(ry)]
|
||||
# ])
|
||||
#
|
||||
# Rz = np.array([
|
||||
# [np.cos(rz), -np.sin(rz), 0],
|
||||
# [np.sin(rz), np.cos(rz), 0],
|
||||
# [0, 0, 1]
|
||||
# ])
|
||||
#
|
||||
# return Rz @ Ry @ Rx
|
||||
|
||||
|
||||
# ============================================================
|
||||
# 3. YOUR IK FUNCTION GOES HERE
|
||||
# ============================================================
|
||||
|
||||
def solve_ik_user(target_position, target_rotation):
|
||||
"""
|
||||
Replace this function with your own IK solver.
|
||||
|
||||
Parameters
|
||||
----------
|
||||
target_position : np.ndarray, shape (3,)
|
||||
Desired TCP position in base_link frame.
|
||||
|
||||
target_rotation : np.ndarray, shape (3, 3)
|
||||
Desired TCP rotation matrix in base_link frame.
|
||||
|
||||
Returns
|
||||
-------
|
||||
None
|
||||
If IK fails.
|
||||
|
||||
or
|
||||
|
||||
np.ndarray, shape (7,)
|
||||
One IK solution.
|
||||
|
||||
or
|
||||
|
||||
list[np.ndarray]
|
||||
Multiple IK solutions.
|
||||
|
||||
Important:
|
||||
Joint order must be:
|
||||
[joint_1, joint_2, joint_3, joint_4, joint_5, joint_6, joint_7]
|
||||
"""
|
||||
|
||||
# ========================================================
|
||||
# INSERT YOUR IK CODE HERE
|
||||
# ========================================================
|
||||
initial_guess = [0.1] * 7
|
||||
|
||||
ret_qp, q = robot_kine_qp.inverse_kinematics(target_position=target_position, target_rpy=target_rotation, initial_guess=initial_guess, tool=tool_name, max_iter=250)
|
||||
# print(f'---- with qp ik, ret_qp: {ret_qp}, q = {q}')
|
||||
if ret_qp == 0:
|
||||
return q
|
||||
|
||||
|
||||
ret_rm, q = robot_kine_rm.inverse_kinematics(target_position=target_position, target_rpy=target_rotation, initial_guess=initial_guess, tool=tool_name)
|
||||
# print(f'==== with rm ik, ret_rm: {ret_rm}, q = {q}')
|
||||
if ret_rm == 0:
|
||||
return q
|
||||
|
||||
|
||||
return None
|
||||
|
||||
|
||||
# ============================================================
|
||||
# 4. URDF / FK UTILITIES
|
||||
# ============================================================
|
||||
|
||||
def load_robot_and_limits(urdf_path):
|
||||
robot = URDF.load(urdf_path)
|
||||
|
||||
joints = []
|
||||
lower = []
|
||||
upper = []
|
||||
|
||||
joint_map = {j.name: j for j in robot.joints}
|
||||
|
||||
for name in JOINT_NAMES:
|
||||
joint = joint_map[name]
|
||||
joints.append(joint)
|
||||
|
||||
if joint.limit is None:
|
||||
raise ValueError(f"Joint {name} has no limit in URDF.")
|
||||
|
||||
lower.append(joint.limit.lower)
|
||||
upper.append(joint.limit.upper)
|
||||
|
||||
lower = np.asarray(lower, dtype=float)
|
||||
upper = np.asarray(upper, dtype=float)
|
||||
|
||||
return robot, lower, upper
|
||||
|
||||
|
||||
# def q_to_cfg(q):
|
||||
# """
|
||||
# Convert joint vector to urdfpy FK config dictionary.
|
||||
# """
|
||||
# return {name: float(q[i]) for i, name in enumerate(JOINT_NAMES)}
|
||||
|
||||
|
||||
# def fk_transform(robot, q):
|
||||
# """
|
||||
# Forward kinematics from base_link to TCP_LINK.
|
||||
#
|
||||
# Returns
|
||||
# -------
|
||||
# T : np.ndarray, shape (4, 4)
|
||||
# """
|
||||
# cfg = q_to_cfg(q)
|
||||
# fk = robot.link_fk(cfg=cfg)
|
||||
# tcp_link = robot.link_map[TCP_LINK]
|
||||
# return fk[tcp_link]
|
||||
#
|
||||
#
|
||||
# def fk_position(robot, q):
|
||||
# T = fk_transform(robot, q)
|
||||
# return T[:3, 3]
|
||||
|
||||
|
||||
# ============================================================
|
||||
# 5. COMFORT METRICS
|
||||
# ============================================================
|
||||
|
||||
def is_within_joint_limits(q, lower, upper, tol=1e-8):
|
||||
q = np.asarray(q)
|
||||
return np.all(q >= lower - tol) and np.all(q <= upper + tol)
|
||||
|
||||
|
||||
def joint_limit_score(q, lower, upper):
|
||||
"""
|
||||
Score in [0, 1].
|
||||
1 means every joint is at center of its range.
|
||||
0 means at least one joint is at its limit.
|
||||
"""
|
||||
|
||||
q = np.asarray(q)
|
||||
mid = 0.5 * (lower + upper)
|
||||
half_range = 0.5 * (upper - lower)
|
||||
|
||||
per_joint_score = 1.0 - np.abs(q - mid) / half_range
|
||||
per_joint_score = np.clip(per_joint_score, 0.0, 1.0)
|
||||
|
||||
# Conservative: one bad joint makes the whole pose less comfortable.
|
||||
return float(np.min(per_joint_score))
|
||||
|
||||
|
||||
def joint_margin(q, lower, upper):
|
||||
"""
|
||||
Minimum normalized distance to joint limits.
|
||||
|
||||
0.15 means the closest joint is 15% away from its limit.
|
||||
"""
|
||||
q = np.asarray(q)
|
||||
margin_lower = (q - lower) / (upper - lower)
|
||||
margin_upper = (upper - q) / (upper - lower)
|
||||
margin = np.minimum(margin_lower, margin_upper)
|
||||
return float(np.min(margin))
|
||||
|
||||
|
||||
def q_to_cfg(q):
|
||||
"""
|
||||
Convert joint vector to urdfpy FK config dictionary.
|
||||
"""
|
||||
return {name: float(q[i]) for i, name in enumerate(JOINT_NAMES)}
|
||||
|
||||
|
||||
def fk_transform(robot, q):
|
||||
"""
|
||||
Forward kinematics from base_link to TCP_LINK.
|
||||
|
||||
Returns
|
||||
-------
|
||||
T : np.ndarray, shape (4, 4)
|
||||
"""
|
||||
cfg = q_to_cfg(q)
|
||||
fk = robot.link_fk(cfg=cfg)
|
||||
tcp_link = robot.link_map[TCP_LINK]
|
||||
return fk[tcp_link]
|
||||
|
||||
|
||||
def numerical_geometric_jacobian(robot, q, eps=1e-5):
|
||||
"""
|
||||
Numerical 6D geometric-like Jacobian, shape (6, 7).
|
||||
|
||||
Top 3 rows:
|
||||
linear velocity approximation
|
||||
|
||||
Bottom 3 rows:
|
||||
angular velocity approximation as rotation-vector difference
|
||||
|
||||
This is useful for manipulability and singularity checks.
|
||||
"""
|
||||
q = np.asarray(q, dtype=float)
|
||||
n = len(q)
|
||||
|
||||
J = np.zeros((6, n))
|
||||
|
||||
T0 = fk_transform(robot, q)
|
||||
p0 = T0[:3, 3]
|
||||
R0 = T0[:3, :3]
|
||||
|
||||
for i in range(n):
|
||||
q_plus = q.copy()
|
||||
q_minus = q.copy()
|
||||
|
||||
q_plus[i] += eps
|
||||
q_minus[i] -= eps
|
||||
|
||||
T_plus = fk_transform(robot, q_plus)
|
||||
T_minus = fk_transform(robot, q_minus)
|
||||
|
||||
p_plus = T_plus[:3, 3]
|
||||
p_minus = T_minus[:3, 3]
|
||||
|
||||
R_plus = T_plus[:3, :3]
|
||||
R_minus = T_minus[:3, :3]
|
||||
|
||||
# Linear part
|
||||
J[:3, i] = (p_plus - p_minus) / (2.0 * eps)
|
||||
|
||||
# Angular part
|
||||
# Relative rotation from minus to plus.
|
||||
dR = R_plus @ R_minus.T
|
||||
rotvec = R.from_matrix(dR).as_rotvec()
|
||||
J[3:, i] = rotvec / (2.0 * eps)
|
||||
|
||||
return J
|
||||
|
||||
|
||||
def manipulability_score_from_jacobian(J):
|
||||
"""
|
||||
Yoshikawa-style manipulability.
|
||||
|
||||
For a 6x7 Jacobian:
|
||||
w = sqrt(det(J J.T))
|
||||
|
||||
To improve numerical robustness, compute from singular values.
|
||||
"""
|
||||
singular_values = np.linalg.svd(J, compute_uv=False)
|
||||
|
||||
# Product of singular values.
|
||||
# For a 6x7 Jacobian, there are 6 singular values.
|
||||
w = float(np.prod(singular_values))
|
||||
|
||||
return w
|
||||
|
||||
|
||||
def condition_number_from_jacobian(J, min_sigma=1e-9):
|
||||
singular_values = np.linalg.svd(J, compute_uv=False)
|
||||
sigma_max = np.max(singular_values)
|
||||
sigma_min = np.min(singular_values)
|
||||
|
||||
if sigma_min < min_sigma:
|
||||
return np.inf
|
||||
|
||||
return float(sigma_max / sigma_min)
|
||||
|
||||
|
||||
def singularity_score(condition_number):
|
||||
"""
|
||||
Score in [0, 1].
|
||||
Higher is better.
|
||||
|
||||
condition_number = 1 is ideal.
|
||||
Very large means near singularity.
|
||||
"""
|
||||
if not np.isfinite(condition_number):
|
||||
return 0.0
|
||||
|
||||
return float(1.0 / condition_number)
|
||||
|
||||
|
||||
# ============================================================
|
||||
# 6. IK RESULT HANDLING
|
||||
# ============================================================
|
||||
|
||||
def normalize_ik_solutions(ik_result):
|
||||
"""
|
||||
Your IK returns:
|
||||
- None if failed
|
||||
- one list/array of 7 joint values if successful
|
||||
"""
|
||||
if ik_result is None:
|
||||
return []
|
||||
|
||||
q = np.asarray(ik_result, dtype=float).reshape(-1)
|
||||
|
||||
if q.shape[0] != 7:
|
||||
return []
|
||||
|
||||
return [q]
|
||||
|
||||
|
||||
def evaluate_single_solution(robot, q, lower, upper):
|
||||
"""
|
||||
Evaluate one IK solution.
|
||||
|
||||
Returns a dictionary with metrics.
|
||||
"""
|
||||
|
||||
if q.shape[0] != 7:
|
||||
return None
|
||||
|
||||
if not is_within_joint_limits(q, lower, upper):
|
||||
return None
|
||||
|
||||
jl_score = joint_limit_score(q, lower, upper)
|
||||
jl_margin = joint_margin(q, lower, upper)
|
||||
|
||||
J = numerical_geometric_jacobian(robot, q, eps=JACOBIAN_EPS)
|
||||
|
||||
manip = manipulability_score_from_jacobian(J)
|
||||
cond = condition_number_from_jacobian(J)
|
||||
sing_score = singularity_score(cond)
|
||||
|
||||
valid_by_thresholds = (
|
||||
jl_margin >= MIN_JOINT_MARGIN
|
||||
and cond <= MAX_CONDITION_NUMBER
|
||||
)
|
||||
|
||||
return {
|
||||
"q": q,
|
||||
"joint_limit_score": jl_score,
|
||||
"joint_margin": jl_margin,
|
||||
"manipulability": manip,
|
||||
"condition_number": cond,
|
||||
"singularity_score": sing_score,
|
||||
"valid_by_thresholds": valid_by_thresholds,
|
||||
}
|
||||
|
||||
|
||||
# ============================================================
|
||||
# 7. MAIN WORKSPACE EVALUATION
|
||||
# ============================================================
|
||||
|
||||
def make_grid():
|
||||
xs = np.arange(X_RANGE[0], X_RANGE[1] + 1e-9, GRID_RESOLUTION)
|
||||
ys = np.arange(Y_RANGE[0], Y_RANGE[1] + 1e-9, GRID_RESOLUTION)
|
||||
zs = np.arange(Z_RANGE[0], Z_RANGE[1] + 1e-9, GRID_RESOLUTION)
|
||||
|
||||
points = []
|
||||
|
||||
for x in xs:
|
||||
for y in ys:
|
||||
for z in zs:
|
||||
points.append(np.array([x, y, z], dtype=float))
|
||||
|
||||
return points
|
||||
|
||||
|
||||
def evaluate_workspace():
|
||||
robot, lower, upper = load_robot_and_limits(URDF_PATH)
|
||||
orientations = make_task_orientations()
|
||||
grid_points = make_grid()
|
||||
|
||||
rows = []
|
||||
|
||||
# First pass stores raw manipulability.
|
||||
# Later we normalize manipulability by max observed value.
|
||||
all_valid_solution_metrics = []
|
||||
|
||||
print(f"Loaded robot from: {URDF_PATH}")
|
||||
print(f"Grid points: {len(grid_points)}")
|
||||
print(f"Orientations per point: {len(orientations)}")
|
||||
print("Evaluating IK reachability and raw metrics...")
|
||||
|
||||
for point in tqdm(grid_points):
|
||||
point_solution_metrics = []
|
||||
|
||||
attempted = 0
|
||||
ik_success_count = 0
|
||||
|
||||
|
||||
for rpy in orientations:
|
||||
attempted += 1
|
||||
|
||||
# print(f"\n - target point: {point}, target orientation: {rpy}")
|
||||
|
||||
ik_result = solve_ik_user(point, rpy)
|
||||
candidate_solutions = normalize_ik_solutions(ik_result)
|
||||
|
||||
|
||||
|
||||
|
||||
if len(candidate_solutions) == 0:
|
||||
continue
|
||||
|
||||
evaluated_solutions = []
|
||||
|
||||
for q in candidate_solutions:
|
||||
metrics = evaluate_single_solution(robot, q, lower, upper)
|
||||
# print(f'matrics: {metrics}, q = {q}, lower = {lower}, upper = {upper}')
|
||||
if metrics is not None:
|
||||
evaluated_solutions.append(metrics)
|
||||
|
||||
if len(evaluated_solutions) == 0:
|
||||
continue
|
||||
|
||||
ik_success_count += 1
|
||||
|
||||
# Use the best solution for this pose.
|
||||
# At this stage, manipulability is not normalized,
|
||||
# so use joint score + singularity score as temporary ranking.
|
||||
best = max(
|
||||
evaluated_solutions,
|
||||
key=lambda m: 0.6 * m["joint_limit_score"] + 0.4 * m["singularity_score"]
|
||||
)
|
||||
|
||||
point_solution_metrics.append(best)
|
||||
all_valid_solution_metrics.append(best)
|
||||
print(f'this position+all orientations, the point_solution_metrics = {point_solution_metrics}')
|
||||
ik_success_rate = ik_success_count / attempted if attempted > 0 else 0.0
|
||||
|
||||
if len(point_solution_metrics) == 0:
|
||||
rows.append({
|
||||
"x": point[0],
|
||||
"y": point[1],
|
||||
"z": point[2],
|
||||
"ik_success_rate": 0.0,
|
||||
"joint_limit_score": 0.0,
|
||||
"joint_margin": 0.0,
|
||||
"manipulability": 0.0,
|
||||
"manipulability_score": 0.0,
|
||||
"condition_number": np.inf,
|
||||
"singularity_score": 0.0,
|
||||
"comfort_score": 0.0,
|
||||
"comfortable": False,
|
||||
"reachable": False,
|
||||
})
|
||||
else:
|
||||
# Average over task orientations.
|
||||
rows.append({
|
||||
"x": point[0],
|
||||
"y": point[1],
|
||||
"z": point[2],
|
||||
"ik_success_rate": ik_success_rate,
|
||||
"joint_limit_score": np.mean([m["joint_limit_score"] for m in point_solution_metrics]),
|
||||
"joint_margin": np.mean([m["joint_margin"] for m in point_solution_metrics]),
|
||||
"manipulability": np.mean([m["manipulability"] for m in point_solution_metrics]),
|
||||
"manipulability_score": 0.0, # filled later
|
||||
"condition_number": np.mean([m["condition_number"] for m in point_solution_metrics]),
|
||||
"singularity_score": np.mean([m["singularity_score"] for m in point_solution_metrics]),
|
||||
"comfort_score": 0.0, # filled later
|
||||
"comfortable": False,
|
||||
"reachable": True,
|
||||
})
|
||||
|
||||
df = pd.DataFrame(rows)
|
||||
|
||||
# Normalize manipulability by maximum observed value.
|
||||
max_manip = df["manipulability"].replace([np.inf, -np.inf], np.nan).max()
|
||||
|
||||
if max_manip is None or not np.isfinite(max_manip) or max_manip <= 0:
|
||||
max_manip = 1.0
|
||||
|
||||
df["manipulability_score"] = df["manipulability"] / max_manip
|
||||
df["manipulability_score"] = df["manipulability_score"].clip(0.0, 1.0)
|
||||
|
||||
# Final comfort score.
|
||||
df["comfort_score"] = (
|
||||
WEIGHT_IK_SUCCESS * df["ik_success_rate"]
|
||||
+ WEIGHT_JOINT_LIMIT * df["joint_limit_score"]
|
||||
+ WEIGHT_MANIPULABILITY * df["manipulability_score"]
|
||||
+ WEIGHT_SINGULARITY * df["singularity_score"]
|
||||
)
|
||||
|
||||
# Comfortable binary classification.
|
||||
df["comfortable"] = (
|
||||
(df["reachable"] == True)
|
||||
& (df["ik_success_rate"] >= 0.80)
|
||||
& (df["joint_margin"] >= MIN_JOINT_MARGIN)
|
||||
& (df["condition_number"] <= MAX_CONDITION_NUMBER)
|
||||
& (df["manipulability_score"] >= MIN_MANIPULABILITY_RATIO)
|
||||
)
|
||||
|
||||
return df
|
||||
|
||||
|
||||
# ============================================================
|
||||
# 8. PLOTTING
|
||||
# ============================================================
|
||||
|
||||
def plot_workspace(df):
|
||||
"""
|
||||
3D scatter plot:
|
||||
gray/low = low comfort
|
||||
brighter = higher comfort
|
||||
"""
|
||||
|
||||
reachable = df[df["reachable"] == True]
|
||||
|
||||
if len(reachable) == 0:
|
||||
print("No reachable points found. Check your IK function.")
|
||||
return
|
||||
|
||||
fig = plt.figure()
|
||||
ax = fig.add_subplot(111, projection="3d")
|
||||
|
||||
sc = ax.scatter(
|
||||
reachable["x"],
|
||||
reachable["y"],
|
||||
reachable["z"],
|
||||
c=reachable["comfort_score"],
|
||||
s=12,
|
||||
alpha=0.8,
|
||||
)
|
||||
|
||||
ax.set_title("RM75-B Comfortable Workspace")
|
||||
ax.set_xlabel("X [m]")
|
||||
ax.set_ylabel("Y [m]")
|
||||
ax.set_zlabel("Z [m]")
|
||||
|
||||
fig.colorbar(sc, ax=ax, label="Comfort score")
|
||||
plt.show()
|
||||
|
||||
|
||||
def plot_comfortable_only(df):
|
||||
comfortable = df[df["comfortable"] == True]
|
||||
|
||||
if len(comfortable) == 0:
|
||||
print("No comfortable points found under current thresholds.")
|
||||
return
|
||||
|
||||
fig = plt.figure()
|
||||
ax = fig.add_subplot(111, projection="3d")
|
||||
|
||||
ax.scatter(
|
||||
comfortable["x"],
|
||||
comfortable["y"],
|
||||
comfortable["z"],
|
||||
c=comfortable["comfort_score"],
|
||||
s=16,
|
||||
alpha=0.9,
|
||||
)
|
||||
|
||||
ax.set_title("RM75-B Comfortable Region Only")
|
||||
ax.set_xlabel("X [m]")
|
||||
ax.set_ylabel("Y [m]")
|
||||
ax.set_zlabel("Z [m]")
|
||||
|
||||
plt.show()
|
||||
|
||||
|
||||
# ============================================================
|
||||
# 9. ENTRY POINT
|
||||
# ============================================================
|
||||
|
||||
if __name__ == "__main__":
|
||||
df = evaluate_workspace()
|
||||
|
||||
output_csv = "rm75b_comfort_workspace.csv"
|
||||
df.to_csv(output_csv, index=False)
|
||||
|
||||
print(f"\nSaved result to: {output_csv}")
|
||||
|
||||
print("\nSummary:")
|
||||
print(f"Total grid points: {len(df)}")
|
||||
print(f"Reachable points: {df['reachable'].sum()}")
|
||||
print(f"Comfortable points: {df['comfortable'].sum()}")
|
||||
|
||||
if df["reachable"].sum() > 0:
|
||||
print(f"Max comfort score: {df['comfort_score'].max():.3f}")
|
||||
print(f"Mean comfort score: {df[df['reachable']]['comfort_score'].mean():.3f}")
|
||||
|
||||
plot_workspace(df)
|
||||
plot_comfortable_only(df)
|
||||
@@ -0,0 +1,3 @@
|
||||
conda install -c conda-forge osqp scipy tqdm matplotlib pandas "numpy<1.24" pinocchio -y
|
||||
pip install urdfpy mujoco "networkx>=2.8.4"
|
||||
pip install Robotic_Arm
|
||||
+1236
File diff suppressed because it is too large
Load Diff
@@ -0,0 +1,48 @@
|
||||
|
||||
|
||||
# conda activate coppeliasim
|
||||
# env fix, in terminal: fix_robotics_env.sh
|
||||
|
||||
from rm75_kinematics import rm75_kinematics
|
||||
|
||||
from math import pi
|
||||
import numpy as np
|
||||
|
||||
# pose expression of tool-tip in end-effector, x y z quatx quaty quatz quatw
|
||||
# load: kg, mass_center_x in ee frame: m, y, z, then last threes are for filling
|
||||
tools_in_ee = {
|
||||
'scissor': np.array([[0.0, 0.0, 0.19, 0.0, 0.0, 0.0, 1.0],[0.66, 0.0, 0.0, 0.06, 0.0, 0.0, 0.0]],dtype=np.float64),
|
||||
'omnipic': np.array([[0.0, 0.0, 0.16, 0.0, 0.0, 0.0, 1.0],[0.43, 0.0, 0.0, 0.06, 0.0, 0.0, 0.0]],dtype=np.float64),
|
||||
'minisci': np.array([[0.0, 0.0, 0.19, 0.0, 0.0, 0.0, 1.0],[0.46, 0.0, 0.0, 0.06, 0.0, 0.0, 0.0]],dtype=np.float64),
|
||||
'no_tool': np.array([[0.0, 0.0, 0.0, 0.0, 0.0, 0.0, 1.0],[0.0, 0.0, 0.0, 0.0, 0.0, 0.0, 0.0]],dtype=np.float64),
|
||||
}
|
||||
|
||||
# joint limit
|
||||
ub = np.array([179.0, 129.0, 179.0, 134, 179.0, 127.0, 359.0])/180*pi
|
||||
lb = -ub
|
||||
|
||||
tool_name = "scissor"
|
||||
|
||||
def main():
|
||||
"""Demonstrate pure position control"""
|
||||
|
||||
# Create controller
|
||||
|
||||
robot_kine = rm75_kinematics(urdf_path='urdf_rm75/RM75-SCI.urdf', mesh_dir='urdf_rm75',
|
||||
tcps=["scissor_tcp", "camera_tcp"], tools_in_ee=tools_in_ee, min_j=lb, max_j=ub)
|
||||
|
||||
ret_ik, q = robot_kine.get_ik_result(target_position=[0.2, -0.2 , 0.5 ], target_rpy=[0.2022060487764064, -0.0097962261845583, -0.6518417572686532],
|
||||
initial_guess=[0.1] * 7, tool=tool_name)
|
||||
|
||||
self_collision_sts = robot_kine.get_self_collision(q)
|
||||
|
||||
p = robot_kine.get_fk_result(joint_angles=q,tool=tool_name)
|
||||
|
||||
print(f'self_collision_sts: {self_collision_sts}')
|
||||
|
||||
|
||||
|
||||
|
||||
|
||||
if __name__ == "__main__":
|
||||
main()
|
||||
@@ -0,0 +1,90 @@
|
||||
|
||||
|
||||
# conda activate coppeliasim
|
||||
# env fix, in terminal: fix_robotics_env.sh
|
||||
|
||||
from rm75_kinematics import rm75_kinematics
|
||||
|
||||
from math import pi
|
||||
import numpy as np
|
||||
|
||||
# pose expression of tool-tip in end-effector, x y z quatx quaty quatz quatw
|
||||
# load: kg, mass_center_x in ee frame: m, y, z, then last threes are for filling
|
||||
tools_in_ee = {
|
||||
'scissor': np.array([[0.0, 0.0, 0.19, 0.0, 0.0, 0.0, 1.0],[0.66, 0.0, 0.0, 0.06, 0.0, 0.0, 0.0]],dtype=np.float64),
|
||||
'omnipic': np.array([[0.0, 0.0, 0.16, 0.0, 0.0, 0.0, 1.0],[0.43, 0.0, 0.0, 0.06, 0.0, 0.0, 0.0]],dtype=np.float64),
|
||||
'minisci': np.array([[0.0, 0.0, 0.19, 0.0, 0.0, 0.0, 1.0],[0.46, 0.0, 0.0, 0.06, 0.0, 0.0, 0.0]],dtype=np.float64),
|
||||
'no_tool': np.array([[0.0, 0.0, 0.0, 0.0, 0.0, 0.0, 1.0],[0.0, 0.0, 0.0, 0.0, 0.0, 0.0, 0.0]],dtype=np.float64),
|
||||
}
|
||||
|
||||
# joint limit
|
||||
ub = np.array([179.0, 129.0, 179.0, 134, 179.0, 127.0, 359.0])/180*pi
|
||||
lb = -ub
|
||||
|
||||
tool_name = "scissor"
|
||||
|
||||
def main():
|
||||
"""Demonstrate pure position control"""
|
||||
|
||||
# Create controller
|
||||
|
||||
robot_kine = rm75_kinematics(urdf_path='urdf_rm75/RM75-SCI.urdf', mesh_dir='urdf_rm75',
|
||||
tcps=["scissor_tcp", "camera_tcp"], tools_in_ee=tools_in_ee, min_j=lb, max_j=ub)
|
||||
|
||||
ret_ik, q = robot_kine.get_ik_result(target_position=[0.2, -0.2 , 0.5 ], target_rpy=[0.2022060487764064, -0.0097962261845583, -0.6518417572686532],
|
||||
initial_guess=[0.1] * 7, tool=tool_name)
|
||||
|
||||
self_collision_sts = robot_kine.get_self_collision(q)
|
||||
|
||||
p = robot_kine.get_fk_result(joint_angles=q,tool=tool_name)
|
||||
|
||||
print(f'self_collision_sts: {self_collision_sts}')
|
||||
|
||||
import numpy as np
|
||||
|
||||
ik_suc = 0
|
||||
|
||||
for i in range(100):
|
||||
joint_rand = np.random.uniform(ub, lb)
|
||||
|
||||
p_t = robot_kine.get_fk_result(joint_angles=joint_rand.tolist(), tool=tool_name)
|
||||
|
||||
joint_rand_init = np.random.uniform(ub, lb)
|
||||
|
||||
ret_ik, q = robot_kine.get_ik_result(target_position=p_t[0:3], target_rpy=p_t[3:6],
|
||||
initial_guess=joint_rand_init, tool=tool_name)
|
||||
|
||||
|
||||
|
||||
|
||||
p_fk = robot_kine.get_fk_result(joint_angles=q, tool=tool_name)
|
||||
|
||||
d_p_ik = cal_pose_deviation(pose1=p_t, pose2=p_fk)
|
||||
|
||||
coll_sts = robot_kine.get_self_collision(joint_angles=q)
|
||||
if ret_ik == True:
|
||||
|
||||
print(f'\n---- success, in the ik, j_t = {joint_rand}, q = {q}, p_t = {p_t}, d_p_ik = {d_p_ik}, self-collision_sts = {coll_sts}')
|
||||
|
||||
ik_suc += 1
|
||||
else:
|
||||
print(f'\n**** ik failed, in the ik, j_t = {joint_rand}, q={q}, p_t = {p_t}, d_p_ik = {d_p_ik}, self-collision_sts = {coll_sts}')
|
||||
|
||||
|
||||
print(f'ik_suc: {ik_suc}')
|
||||
|
||||
|
||||
def cal_pose_deviation(pose1, pose2):
|
||||
d_fk_p1 = np.array(pose1) - np.array(pose2)
|
||||
for j in [3, 4, 5]:
|
||||
while d_fk_p1[j] > pi:
|
||||
d_fk_p1[j] -= 2 * pi
|
||||
while d_fk_p1[j] < -pi:
|
||||
d_fk_p1[j] += 2 * pi
|
||||
d_fk = np.linalg.norm(d_fk_p1)
|
||||
return d_fk
|
||||
|
||||
|
||||
|
||||
if __name__ == "__main__":
|
||||
main()
|
||||
@@ -0,0 +1,555 @@
|
||||
<?xml version='1.0' encoding='utf-8'?>
|
||||
<robot name="rm75_dual_arm">
|
||||
<!--Shared supporting base. Adjust the two mount joint origins to match the CAD mounting frames.-->
|
||||
<link name="dual_arm_base_link">
|
||||
<visual>
|
||||
<origin xyz="0 0 0" rpy="0 0 0" />
|
||||
<geometry>
|
||||
<mesh filename="meshes/dual_arm_base.stl" scale="1 1 1" />
|
||||
</geometry>
|
||||
<material name="dual_arm_base_material">
|
||||
<color rgba="0.5 0.5 0.5 1" />
|
||||
</material>
|
||||
</visual>
|
||||
<collision>
|
||||
<origin xyz="0 0 0" rpy="0 0 0" />
|
||||
<geometry>
|
||||
<mesh filename="meshes/dual_arm_base.stl" scale="1 1 1" />
|
||||
</geometry>
|
||||
</collision>
|
||||
</link>
|
||||
<link name="omnipic_base_link">
|
||||
<inertial>
|
||||
<origin xyz="0.00049987 5.2709E-05 0.060019" rpy="0 0 0" />
|
||||
<mass value="1.862" />
|
||||
<inertia ixx="0.0017232" ixy="-3.1058E-06" ixz="-3.7924E-05" iyy="0.0017051" iyz="1.3691E-06" izz="0.00090158" />
|
||||
</inertial>
|
||||
<visual>
|
||||
<origin xyz="0 0 0" rpy="0 0 0" />
|
||||
<geometry>
|
||||
<mesh filename="meshes/base_link.STL" />
|
||||
</geometry>
|
||||
<material name="">
|
||||
<color rgba="1 1 1 1" />
|
||||
</material>
|
||||
</visual>
|
||||
<collision>
|
||||
<origin xyz="0 0 0" rpy="0 0 0" />
|
||||
<geometry>
|
||||
<mesh filename="meshes/base_link.STL" />
|
||||
</geometry>
|
||||
</collision>
|
||||
</link>
|
||||
<link name="omnipic_link_1">
|
||||
<inertial>
|
||||
<origin xyz="0.000241 -0.013273 -0.00995" rpy="0 0 0" />
|
||||
<mass value="1.574" />
|
||||
<inertia ixx="0.002487573" ixy="0.000009663" ixz="-0.000007909" iyy="0.002321038" iyz="0.000179393" izz="0.001450554" />
|
||||
</inertial>
|
||||
<visual>
|
||||
<origin xyz="0 0 0" rpy="0 0 0" />
|
||||
<geometry>
|
||||
<mesh filename="meshes/link_1.STL" />
|
||||
</geometry>
|
||||
<material name="">
|
||||
<color rgba="1 1 1 1" />
|
||||
</material>
|
||||
</visual>
|
||||
<collision>
|
||||
<origin xyz="0 0 0" rpy="0 0 0" />
|
||||
<geometry>
|
||||
<mesh filename="meshes/link_1.STL" />
|
||||
</geometry>
|
||||
</collision>
|
||||
</link>
|
||||
<joint name="omnipic_joint_1" type="revolute">
|
||||
<origin xyz="0 0 0.2405" rpy="0 0 0" />
|
||||
<parent link="omnipic_base_link" />
|
||||
<child link="omnipic_link_1" />
|
||||
<axis xyz="0 0 1" />
|
||||
<limit lower="-3.106" upper="3.106" effort="60" velocity="3.14" />
|
||||
</joint>
|
||||
<link name="omnipic_link_2">
|
||||
<inertial>
|
||||
<origin xyz="-0.000357 -0.106789 0.005329" rpy="0 0 0" />
|
||||
<mass value="1.217" />
|
||||
<inertia ixx="0.003494121" ixy="0.000002921" ixz="-0.000005613" iyy="0.000892721" iyz="-0.000583884" izz="0.003444080" />
|
||||
</inertial>
|
||||
<visual>
|
||||
<origin xyz="0 0 0" rpy="0 0 0" />
|
||||
<geometry>
|
||||
<mesh filename="meshes/link_2.STL" />
|
||||
</geometry>
|
||||
<material name="">
|
||||
<color rgba="1 1 1 1" />
|
||||
</material>
|
||||
</visual>
|
||||
<collision>
|
||||
<origin xyz="0 0 0" rpy="0 0 0" />
|
||||
<geometry>
|
||||
<mesh filename="meshes/link_2.STL" />
|
||||
</geometry>
|
||||
</collision>
|
||||
</link>
|
||||
<joint name="omnipic_joint_2" type="revolute">
|
||||
<origin xyz="0 0 0" rpy="-1.5708 0 0" />
|
||||
<parent link="omnipic_link_1" />
|
||||
<child link="omnipic_link_2" />
|
||||
<axis xyz="0 0 1" />
|
||||
<limit lower="-2.2689" upper="2.2689" effort="60" velocity="3.14" />
|
||||
</joint>
|
||||
<link name="omnipic_link_3">
|
||||
<inertial>
|
||||
<origin xyz="0.000003 -0.01398 -0.011324" rpy="0 0 0" />
|
||||
<mass value="1.11" />
|
||||
<inertia ixx="0.001836663" ixy="0.000002259" ixz="-0.000004216" iyy="0.001498875" iyz="0.000037167" izz="0.001062545" />
|
||||
</inertial>
|
||||
<visual>
|
||||
<origin xyz="0 0 0" rpy="0 0 0" />
|
||||
<geometry>
|
||||
<mesh filename="meshes/link_3.STL" />
|
||||
</geometry>
|
||||
<material name="">
|
||||
<color rgba="1 1 1 1" />
|
||||
</material>
|
||||
</visual>
|
||||
<collision>
|
||||
<origin xyz="0 0 0" rpy="0 0 0" />
|
||||
<geometry>
|
||||
<mesh filename="meshes/link_3.STL" />
|
||||
</geometry>
|
||||
</collision>
|
||||
</link>
|
||||
<joint name="omnipic_joint_3" type="revolute">
|
||||
<origin xyz="0 -0.256 0" rpy="1.5708 0 0" />
|
||||
<parent link="omnipic_link_2" />
|
||||
<child link="omnipic_link_3" />
|
||||
<axis xyz="0 0 1" />
|
||||
<limit lower="-3.106" upper="3.106" effort="30" velocity="3.14" />
|
||||
</joint>
|
||||
<link name="omnipic_link_4">
|
||||
<inertial>
|
||||
<origin xyz="-0.000005 -0.084658 0.004747" rpy="0 0 0" />
|
||||
<mass value="0.685" />
|
||||
<inertia ixx="0.001282444" ixy="-0.000000551" ixz="-0.000000630" iyy="0.000373013" iyz="-0.000232084" izz="0.001256177" />
|
||||
</inertial>
|
||||
<visual>
|
||||
<origin xyz="0 0 0" rpy="0 0 0" />
|
||||
<geometry>
|
||||
<mesh filename="meshes/link_4.STL" />
|
||||
</geometry>
|
||||
<material name="">
|
||||
<color rgba="1 1 1 1" />
|
||||
</material>
|
||||
</visual>
|
||||
<collision>
|
||||
<origin xyz="0 0 0" rpy="0 0 0" />
|
||||
<geometry>
|
||||
<mesh filename="meshes/link_4.STL" />
|
||||
</geometry>
|
||||
</collision>
|
||||
</link>
|
||||
<joint name="omnipic_joint_4" type="revolute">
|
||||
<origin xyz="0 0 0" rpy="-1.5708 0 0" />
|
||||
<parent link="omnipic_link_3" />
|
||||
<child link="omnipic_link_4" />
|
||||
<axis xyz="0 0 1" />
|
||||
<limit lower="-2.356" upper="2.356" effort="30" velocity="3.14" />
|
||||
</joint>
|
||||
<link name="omnipic_link_5">
|
||||
<inertial>
|
||||
<origin xyz="0.000078 -0.012937 -0.008781" rpy="0 0 0" />
|
||||
<mass value="0.619" />
|
||||
<inertia ixx="0.000627336" ixy="0.000001636" ixz="-0.000001345" iyy="0.000542455" iyz="0.000034970" izz="0.000370291" />
|
||||
</inertial>
|
||||
<visual>
|
||||
<origin xyz="0 0 0" rpy="0 0 0" />
|
||||
<geometry>
|
||||
<mesh filename="meshes/link_5.STL" />
|
||||
</geometry>
|
||||
<material name="">
|
||||
<color rgba="1 1 1 1" />
|
||||
</material>
|
||||
</visual>
|
||||
<collision>
|
||||
<origin xyz="0 0 0" rpy="0 0 0" />
|
||||
<geometry>
|
||||
<mesh filename="meshes/link_5.STL" />
|
||||
</geometry>
|
||||
</collision>
|
||||
</link>
|
||||
<joint name="omnipic_joint_5" type="revolute">
|
||||
<origin xyz="0 -0.21 0" rpy="1.5708 0 0" />
|
||||
<parent link="omnipic_link_4" />
|
||||
<child link="omnipic_link_5" />
|
||||
<axis xyz="0 0 1" />
|
||||
<limit lower="-3.106" upper="3.106" effort="10" velocity="3.14" />
|
||||
</joint>
|
||||
<link name="omnipic_link_6">
|
||||
<inertial>
|
||||
<origin xyz="-0.000014 -0.078524 0.002819" rpy="0 0 0" />
|
||||
<mass value="0.602" />
|
||||
<inertia ixx="0.000780774" ixy="-0.000000121" ixz="-0.000000469" iyy="0.000289973" iyz="-0.000120513" izz="0.000763955" />
|
||||
</inertial>
|
||||
<visual>
|
||||
<origin xyz="0 0 0" rpy="0 0 0" />
|
||||
<geometry>
|
||||
<mesh filename="meshes/link_6.STL" />
|
||||
</geometry>
|
||||
<material name="">
|
||||
<color rgba="1 1 1 1" />
|
||||
</material>
|
||||
</visual>
|
||||
<collision>
|
||||
<origin xyz="0 0 0" rpy="0 0 0" />
|
||||
<geometry>
|
||||
<mesh filename="meshes/link_6.STL" />
|
||||
</geometry>
|
||||
</collision>
|
||||
</link>
|
||||
<joint name="omnipic_joint_6" type="revolute">
|
||||
<origin xyz="0 0 0" rpy="-1.5708 0 0" />
|
||||
<parent link="omnipic_link_5" />
|
||||
<child link="omnipic_link_6" />
|
||||
<axis xyz="0 0 1" />
|
||||
<limit lower="-2.234" upper="2.234" effort="10" velocity="3.14" />
|
||||
</joint>
|
||||
<link name="omnipic_link_7">
|
||||
<inertial>
|
||||
<origin xyz="0.001094 -0.000077 -0.010119" rpy="0 0 0" />
|
||||
<mass value="0.107" />
|
||||
<inertia ixx="0.000044123" ixy="-0.000000064" ixz="0.0000003" iyy="0.000035078" iyz="-0.000000029" izz="0.000065445" />
|
||||
</inertial>
|
||||
<visual>
|
||||
<origin xyz="0 0 0" rpy="0 0 0" />
|
||||
<geometry>
|
||||
<mesh filename="meshes/link_7.STL" />
|
||||
</geometry>
|
||||
<material name="">
|
||||
<color rgba="1 1 1 1" />
|
||||
</material>
|
||||
</visual>
|
||||
<collision>
|
||||
<origin xyz="0 0 0" rpy="0 0 0" />
|
||||
<geometry>
|
||||
<mesh filename="meshes/link_7.STL" />
|
||||
</geometry>
|
||||
</collision>
|
||||
</link>
|
||||
<joint name="omnipic_joint_7" type="revolute">
|
||||
<origin xyz="0 -0.144 0" rpy="1.5708 0 0" />
|
||||
<parent link="omnipic_link_6" />
|
||||
<child link="omnipic_link_7" />
|
||||
<axis xyz="0 0 1" />
|
||||
<limit lower="-6.28" upper="6.28" effort="10" velocity="3.14" />
|
||||
</joint>
|
||||
<link name="omnipic_gripper_link">
|
||||
<inertial>
|
||||
<origin xyz="0 0 0" rpy="0 0 0" />
|
||||
<mass value="0.1" />
|
||||
<inertia ixx="0.0001" ixy="0" ixz="0" iyy="0.0001" iyz="0" izz="0.0001" />
|
||||
</inertial>
|
||||
<visual>
|
||||
<origin xyz="0 0 0" rpy="0 0 0" />
|
||||
<geometry>
|
||||
<mesh filename="meshes/OmniPic.stl" scale="1 1 1" />
|
||||
</geometry>
|
||||
<material name="omnipic_OmniPic_material">
|
||||
<color rgba="0.7 0.7 0.7 1" />
|
||||
</material>
|
||||
</visual>
|
||||
<collision>
|
||||
<origin xyz="0 0 0" rpy="0 0 0" />
|
||||
<geometry>
|
||||
<mesh filename="meshes/OmniPic.stl" scale="1 1 1" />
|
||||
</geometry>
|
||||
</collision>
|
||||
</link>
|
||||
<joint name="omnipic_OmniPic_fixed_joint" type="fixed">
|
||||
<parent link="omnipic_link_7" />
|
||||
<child link="omnipic_gripper_link" />
|
||||
<origin xyz="0 0 0" rpy="0 0 0" />
|
||||
</joint>
|
||||
<link name="omnipic_OmniPic_tcp" />
|
||||
<joint name="omnipic_OmniPic_tcp_fixed" type="fixed">
|
||||
<parent link="omnipic_gripper_link" />
|
||||
<child link="omnipic_OmniPic_tcp" />
|
||||
<origin xyz="0 0 0.14" rpy="0 0 0" />
|
||||
</joint>
|
||||
<!--Omnipic arm mount: edit xyz/rpy to match dual_arm_base.stl.-->
|
||||
<joint name="omnipic_base_mount_joint" type="fixed">
|
||||
<parent link="dual_arm_base_link" />
|
||||
<child link="omnipic_base_link" />
|
||||
<origin xyz="0.03 0 0" rpy="0 -1.57 3.141593" />
|
||||
</joint>
|
||||
<link name="scissor_base_link">
|
||||
<inertial>
|
||||
<origin xyz="0.00049987 5.2709E-05 0.060019" rpy="0 0 0" />
|
||||
<mass value="1.862" />
|
||||
<inertia ixx="0.0017232" ixy="-3.1058E-06" ixz="-3.7924E-05" iyy="0.0017051" iyz="1.3691E-06" izz="0.00090158" />
|
||||
</inertial>
|
||||
<visual>
|
||||
<origin xyz="0 0 0" rpy="0 0 0" />
|
||||
<geometry>
|
||||
<mesh filename="meshes/base_link.STL" />
|
||||
</geometry>
|
||||
<material name="">
|
||||
<color rgba="1 1 1 1" />
|
||||
</material>
|
||||
</visual>
|
||||
<collision>
|
||||
<origin xyz="0 0 0" rpy="0 0 0" />
|
||||
<geometry>
|
||||
<mesh filename="meshes/base_link.STL" />
|
||||
</geometry>
|
||||
</collision>
|
||||
</link>
|
||||
<link name="scissor_link_1">
|
||||
<inertial>
|
||||
<origin xyz="0.000241 -0.013273 -0.00995" rpy="0 0 0" />
|
||||
<mass value="1.574" />
|
||||
<inertia ixx="0.002487573" ixy="0.000009663" ixz="-0.000007909" iyy="0.002321038" iyz="0.000179393" izz="0.001450554" />
|
||||
</inertial>
|
||||
<visual>
|
||||
<origin xyz="0 0 0" rpy="0 0 0" />
|
||||
<geometry>
|
||||
<mesh filename="meshes/link_1.STL" />
|
||||
</geometry>
|
||||
<material name="">
|
||||
<color rgba="1 1 1 1" />
|
||||
</material>
|
||||
</visual>
|
||||
<collision>
|
||||
<origin xyz="0 0 0" rpy="0 0 0" />
|
||||
<geometry>
|
||||
<mesh filename="meshes/link_1.STL" />
|
||||
</geometry>
|
||||
</collision>
|
||||
</link>
|
||||
<joint name="scissor_joint_1" type="revolute">
|
||||
<origin xyz="0 0 0.2405" rpy="0 0 0" />
|
||||
<parent link="scissor_base_link" />
|
||||
<child link="scissor_link_1" />
|
||||
<axis xyz="0 0 1" />
|
||||
<limit lower="-3.106" upper="3.106" effort="60" velocity="3.14" />
|
||||
</joint>
|
||||
<link name="scissor_link_2">
|
||||
<inertial>
|
||||
<origin xyz="-0.000357 -0.106789 0.005329" rpy="0 0 0" />
|
||||
<mass value="1.217" />
|
||||
<inertia ixx="0.003494121" ixy="0.000002921" ixz="-0.000005613" iyy="0.000892721" iyz="-0.000583884" izz="0.003444080" />
|
||||
</inertial>
|
||||
<visual>
|
||||
<origin xyz="0 0 0" rpy="0 0 0" />
|
||||
<geometry>
|
||||
<mesh filename="meshes/link_2.STL" />
|
||||
</geometry>
|
||||
<material name="">
|
||||
<color rgba="1 1 1 1" />
|
||||
</material>
|
||||
</visual>
|
||||
<collision>
|
||||
<origin xyz="0 0 0" rpy="0 0 0" />
|
||||
<geometry>
|
||||
<mesh filename="meshes/link_2.STL" />
|
||||
</geometry>
|
||||
</collision>
|
||||
</link>
|
||||
<joint name="scissor_joint_2" type="revolute">
|
||||
<origin xyz="0 0 0" rpy="-1.5708 0 0" />
|
||||
<parent link="scissor_link_1" />
|
||||
<child link="scissor_link_2" />
|
||||
<axis xyz="0 0 1" />
|
||||
<limit lower="-2.2689" upper="2.2689" effort="60" velocity="3.14" />
|
||||
</joint>
|
||||
<link name="scissor_link_3">
|
||||
<inertial>
|
||||
<origin xyz="0.000003 -0.01398 -0.011324" rpy="0 0 0" />
|
||||
<mass value="1.11" />
|
||||
<inertia ixx="0.001836663" ixy="0.000002259" ixz="-0.000004216" iyy="0.001498875" iyz="0.000037167" izz="0.001062545" />
|
||||
</inertial>
|
||||
<visual>
|
||||
<origin xyz="0 0 0" rpy="0 0 0" />
|
||||
<geometry>
|
||||
<mesh filename="meshes/link_3.STL" />
|
||||
</geometry>
|
||||
<material name="">
|
||||
<color rgba="1 1 1 1" />
|
||||
</material>
|
||||
</visual>
|
||||
<collision>
|
||||
<origin xyz="0 0 0" rpy="0 0 0" />
|
||||
<geometry>
|
||||
<mesh filename="meshes/link_3.STL" />
|
||||
</geometry>
|
||||
</collision>
|
||||
</link>
|
||||
<joint name="scissor_joint_3" type="revolute">
|
||||
<origin xyz="0 -0.256 0" rpy="1.5708 0 0" />
|
||||
<parent link="scissor_link_2" />
|
||||
<child link="scissor_link_3" />
|
||||
<axis xyz="0 0 1" />
|
||||
<limit lower="-3.106" upper="3.106" effort="30" velocity="3.14" />
|
||||
</joint>
|
||||
<link name="scissor_link_4">
|
||||
<inertial>
|
||||
<origin xyz="-0.000005 -0.084658 0.004747" rpy="0 0 0" />
|
||||
<mass value="0.685" />
|
||||
<inertia ixx="0.001282444" ixy="-0.000000551" ixz="-0.000000630" iyy="0.000373013" iyz="-0.000232084" izz="0.001256177" />
|
||||
</inertial>
|
||||
<visual>
|
||||
<origin xyz="0 0 0" rpy="0 0 0" />
|
||||
<geometry>
|
||||
<mesh filename="meshes/link_4.STL" />
|
||||
</geometry>
|
||||
<material name="">
|
||||
<color rgba="1 1 1 1" />
|
||||
</material>
|
||||
</visual>
|
||||
<collision>
|
||||
<origin xyz="0 0 0" rpy="0 0 0" />
|
||||
<geometry>
|
||||
<mesh filename="meshes/link_4.STL" />
|
||||
</geometry>
|
||||
</collision>
|
||||
</link>
|
||||
<joint name="scissor_joint_4" type="revolute">
|
||||
<origin xyz="0 0 0" rpy="-1.5708 0 0" />
|
||||
<parent link="scissor_link_3" />
|
||||
<child link="scissor_link_4" />
|
||||
<axis xyz="0 0 1" />
|
||||
<limit lower="-2.356" upper="2.356" effort="30" velocity="3.14" />
|
||||
</joint>
|
||||
<link name="scissor_link_5">
|
||||
<inertial>
|
||||
<origin xyz="0.000078 -0.012937 -0.008781" rpy="0 0 0" />
|
||||
<mass value="0.619" />
|
||||
<inertia ixx="0.000627336" ixy="0.000001636" ixz="-0.000001345" iyy="0.000542455" iyz="0.000034970" izz="0.000370291" />
|
||||
</inertial>
|
||||
<visual>
|
||||
<origin xyz="0 0 0" rpy="0 0 0" />
|
||||
<geometry>
|
||||
<mesh filename="meshes/link_5.STL" />
|
||||
</geometry>
|
||||
<material name="">
|
||||
<color rgba="1 1 1 1" />
|
||||
</material>
|
||||
</visual>
|
||||
<collision>
|
||||
<origin xyz="0 0 0" rpy="0 0 0" />
|
||||
<geometry>
|
||||
<mesh filename="meshes/link_5.STL" />
|
||||
</geometry>
|
||||
</collision>
|
||||
</link>
|
||||
<joint name="scissor_joint_5" type="revolute">
|
||||
<origin xyz="0 -0.21 0" rpy="1.5708 0 0" />
|
||||
<parent link="scissor_link_4" />
|
||||
<child link="scissor_link_5" />
|
||||
<axis xyz="0 0 1" />
|
||||
<limit lower="-3.106" upper="3.106" effort="10" velocity="3.14" />
|
||||
</joint>
|
||||
<link name="scissor_link_6">
|
||||
<inertial>
|
||||
<origin xyz="-0.000014 -0.078524 0.002819" rpy="0 0 0" />
|
||||
<mass value="0.602" />
|
||||
<inertia ixx="0.000780774" ixy="-0.000000121" ixz="-0.000000469" iyy="0.000289973" iyz="-0.000120513" izz="0.000763955" />
|
||||
</inertial>
|
||||
<visual>
|
||||
<origin xyz="0 0 0" rpy="0 0 0" />
|
||||
<geometry>
|
||||
<mesh filename="meshes/link_6.STL" />
|
||||
</geometry>
|
||||
<material name="">
|
||||
<color rgba="1 1 1 1" />
|
||||
</material>
|
||||
</visual>
|
||||
<collision>
|
||||
<origin xyz="0 0 0" rpy="0 0 0" />
|
||||
<geometry>
|
||||
<mesh filename="meshes/link_6.STL" />
|
||||
</geometry>
|
||||
</collision>
|
||||
</link>
|
||||
<joint name="scissor_joint_6" type="revolute">
|
||||
<origin xyz="0 0 0" rpy="-1.5708 0 0" />
|
||||
<parent link="scissor_link_5" />
|
||||
<child link="scissor_link_6" />
|
||||
<axis xyz="0 0 1" />
|
||||
<limit lower="-2.234" upper="2.234" effort="10" velocity="3.14" />
|
||||
</joint>
|
||||
<link name="scissor_link_7">
|
||||
<inertial>
|
||||
<origin xyz="0.001094 -0.000077 -0.010119" rpy="0 0 0" />
|
||||
<mass value="0.107" />
|
||||
<inertia ixx="0.000044123" ixy="-0.000000064" ixz="0.0000003" iyy="0.000035078" iyz="-0.000000029" izz="0.000065445" />
|
||||
</inertial>
|
||||
<visual>
|
||||
<origin xyz="0 0 0" rpy="0 0 0" />
|
||||
<geometry>
|
||||
<mesh filename="meshes/link_7.STL" />
|
||||
</geometry>
|
||||
<material name="">
|
||||
<color rgba="1 1 1 1" />
|
||||
</material>
|
||||
</visual>
|
||||
<collision>
|
||||
<origin xyz="0 0 0" rpy="0 0 0" />
|
||||
<geometry>
|
||||
<mesh filename="meshes/link_7.STL" />
|
||||
</geometry>
|
||||
</collision>
|
||||
</link>
|
||||
<joint name="scissor_joint_7" type="revolute">
|
||||
<origin xyz="0 -0.144 0" rpy="1.5708 0 0" />
|
||||
<parent link="scissor_link_6" />
|
||||
<child link="scissor_link_7" />
|
||||
<axis xyz="0 0 1" />
|
||||
<limit lower="-6.28" upper="6.28" effort="10" velocity="3.14" />
|
||||
</joint>
|
||||
<link name="scissor_scissor_link">
|
||||
<inertial>
|
||||
<origin xyz="0 0 0" rpy="0 0 0" />
|
||||
<mass value="0.1" />
|
||||
<inertia ixx="0.0001" ixy="0" ixz="0" iyy="0.0001" iyz="0" izz="0.0001" />
|
||||
</inertial>
|
||||
<visual>
|
||||
<origin xyz="0 0 0" rpy="0 0 0" />
|
||||
<geometry>
|
||||
<mesh filename="meshes/scissor.stl" scale="1 1 1" />
|
||||
</geometry>
|
||||
<material name="scissor_scissor_material">
|
||||
<color rgba="0.7 0.7 0.7 1" />
|
||||
</material>
|
||||
</visual>
|
||||
<collision>
|
||||
<origin xyz="0 0 0" rpy="0 0 0" />
|
||||
<geometry>
|
||||
<mesh filename="meshes/scissor.stl" scale="1 1 1" />
|
||||
</geometry>
|
||||
</collision>
|
||||
</link>
|
||||
<joint name="scissor_scissor_fixed_joint" type="fixed">
|
||||
<parent link="scissor_link_7" />
|
||||
<child link="scissor_scissor_link" />
|
||||
<origin xyz="0 0 0.165" rpy="0 0 0" />
|
||||
</joint>
|
||||
<link name="scissor_scissor_tcp" />
|
||||
<joint name="scissor_scissor_tcp_fixed" type="fixed">
|
||||
<parent link="scissor_scissor_link" />
|
||||
<child link="scissor_scissor_tcp" />
|
||||
<origin xyz="0 0 0" rpy="0 0 0" />
|
||||
</joint>
|
||||
<link name="scissor_camera_tcp" />
|
||||
<joint name="scissor_camera_tcp_fixed" type="fixed">
|
||||
<parent link="scissor_scissor_link" />
|
||||
<child link="scissor_camera_tcp" />
|
||||
<origin xyz="0.042 0 -0.0755" rpy="0 0 1.57" />
|
||||
</joint>
|
||||
<!--Scissor arm mount: edit xyz/rpy to match dual_arm_base.stl.-->
|
||||
<joint name="scissor_base_mount_joint" type="fixed">
|
||||
<parent link="dual_arm_base_link" />
|
||||
<child link="scissor_base_link" />
|
||||
<origin xyz="-0.030 0 0" rpy="0 1.57 3.141593" />
|
||||
</joint>
|
||||
</robot>
|
||||
@@ -0,0 +1,507 @@
|
||||
<?xml version="1.0" encoding="utf-8"?>
|
||||
<!-- This URDF was automatically created by SolidWorks to URDF Exporter! Originally created by Stephen Brawner (brawner@gmail.com)
|
||||
Commit Version: 1.6.0-1-g15f4949 Build Version: 1.6.7594.29634
|
||||
For more information, please see http://wiki.ros.org/sw_urdf_exporter -->
|
||||
<robot
|
||||
name="RM75-B">
|
||||
<link
|
||||
name="base_link">
|
||||
<inertial>
|
||||
<origin
|
||||
xyz="0.00049987 5.2709E-05 0.060019"
|
||||
rpy="0 0 0" />
|
||||
<mass
|
||||
value="1.862" />
|
||||
<inertia
|
||||
ixx="0.0017232"
|
||||
ixy="-3.1058E-06"
|
||||
ixz="-3.7924E-05"
|
||||
iyy="0.0017051"
|
||||
iyz="1.3691E-06"
|
||||
izz="0.00090158" />
|
||||
</inertial>
|
||||
<visual>
|
||||
<origin
|
||||
xyz="0 0 0"
|
||||
rpy="0 0 0" />
|
||||
<geometry>
|
||||
<mesh
|
||||
filename="meshes/base_link.STL" />
|
||||
</geometry>
|
||||
<material
|
||||
name="">
|
||||
<color
|
||||
rgba="1 1 1 1" />
|
||||
</material>
|
||||
</visual>
|
||||
<collision>
|
||||
<origin
|
||||
xyz="0 0 0"
|
||||
rpy="0 0 0" />
|
||||
<geometry>
|
||||
<mesh
|
||||
filename="meshes/base_link.STL" />
|
||||
</geometry>
|
||||
</collision>
|
||||
</link>
|
||||
<link
|
||||
name="link_1">
|
||||
<inertial>
|
||||
<origin
|
||||
xyz="0.000241 -0.013273 -0.00995"
|
||||
rpy="0 0 0" />
|
||||
<mass
|
||||
value="1.574" />
|
||||
<inertia
|
||||
ixx="0.002487573"
|
||||
ixy="0.000009663"
|
||||
ixz="-0.000007909"
|
||||
iyy="0.002321038"
|
||||
iyz="0.000179393"
|
||||
izz="0.001450554" />
|
||||
</inertial>
|
||||
<visual>
|
||||
<origin
|
||||
xyz="0 0 0"
|
||||
rpy="0 0 0" />
|
||||
<geometry>
|
||||
<mesh
|
||||
filename="meshes/link_1.STL" />
|
||||
</geometry>
|
||||
<material
|
||||
name="">
|
||||
<color
|
||||
rgba="1 1 1 1" />
|
||||
</material>
|
||||
</visual>
|
||||
<collision>
|
||||
<origin
|
||||
xyz="0 0 0"
|
||||
rpy="0 0 0" />
|
||||
<geometry>
|
||||
<mesh
|
||||
filename="meshes/link_1.STL" />
|
||||
</geometry>
|
||||
</collision>
|
||||
</link>
|
||||
<joint
|
||||
name="joint_1"
|
||||
type="revolute">
|
||||
<origin
|
||||
xyz="0 0 0.2405"
|
||||
rpy="0 0 0" />
|
||||
<parent
|
||||
link="base_link" />
|
||||
<child
|
||||
link="link_1" />
|
||||
<axis
|
||||
xyz="0 0 1" />
|
||||
<limit
|
||||
lower="-3.106"
|
||||
upper="3.106"
|
||||
effort="60"
|
||||
velocity="3.14" />
|
||||
</joint>
|
||||
<link
|
||||
name="link_2">
|
||||
<inertial>
|
||||
<origin
|
||||
xyz="-0.000357 -0.106789 0.005329"
|
||||
rpy="0 0 0" />
|
||||
<mass
|
||||
value="1.217" />
|
||||
<inertia
|
||||
ixx="0.003494121"
|
||||
ixy="0.000002921"
|
||||
ixz="-0.000005613"
|
||||
iyy="0.000892721"
|
||||
iyz="-0.000583884"
|
||||
izz="0.003444080" />
|
||||
</inertial>
|
||||
<visual>
|
||||
<origin
|
||||
xyz="0 0 0"
|
||||
rpy="0 0 0" />
|
||||
<geometry>
|
||||
<mesh
|
||||
filename="meshes/link_2.STL" />
|
||||
</geometry>
|
||||
<material
|
||||
name="">
|
||||
<color
|
||||
rgba="1 1 1 1" />
|
||||
</material>
|
||||
</visual>
|
||||
<collision>
|
||||
<origin
|
||||
xyz="0 0 0"
|
||||
rpy="0 0 0" />
|
||||
<geometry>
|
||||
<mesh
|
||||
filename="meshes/link_2.STL" />
|
||||
</geometry>
|
||||
</collision>
|
||||
</link>
|
||||
<joint
|
||||
name="joint_2"
|
||||
type="revolute">
|
||||
<origin
|
||||
xyz="0 0 0"
|
||||
rpy="-1.5708 0 0" />
|
||||
<parent
|
||||
link="link_1" />
|
||||
<child
|
||||
link="link_2" />
|
||||
<axis
|
||||
xyz="0 0 1" />
|
||||
<limit
|
||||
lower="-2.2689"
|
||||
upper="2.2689"
|
||||
effort="60"
|
||||
velocity="3.14" />
|
||||
</joint>
|
||||
<link
|
||||
name="link_3">
|
||||
<inertial>
|
||||
<origin
|
||||
xyz="0.000003 -0.01398 -0.011324"
|
||||
rpy="0 0 0" />
|
||||
<mass
|
||||
value="1.11" />
|
||||
<inertia
|
||||
ixx="0.001836663"
|
||||
ixy="0.000002259"
|
||||
ixz="-0.000004216"
|
||||
iyy="0.001498875"
|
||||
iyz="0.000037167"
|
||||
izz="0.001062545" />
|
||||
</inertial>
|
||||
<visual>
|
||||
<origin
|
||||
xyz="0 0 0"
|
||||
rpy="0 0 0" />
|
||||
<geometry>
|
||||
<mesh
|
||||
filename="meshes/link_3.STL" />
|
||||
</geometry>
|
||||
<material
|
||||
name="">
|
||||
<color
|
||||
rgba="1 1 1 1" />
|
||||
</material>
|
||||
</visual>
|
||||
<collision>
|
||||
<origin
|
||||
xyz="0 0 0"
|
||||
rpy="0 0 0" />
|
||||
<geometry>
|
||||
<mesh
|
||||
filename="meshes/link_3.STL" />
|
||||
</geometry>
|
||||
</collision>
|
||||
</link>
|
||||
<joint
|
||||
name="joint_3"
|
||||
type="revolute">
|
||||
<origin
|
||||
xyz="0 -0.256 0"
|
||||
rpy="1.5708 0 0" />
|
||||
<parent
|
||||
link="link_2" />
|
||||
<child
|
||||
link="link_3" />
|
||||
<axis
|
||||
xyz="0 0 1" />
|
||||
<limit
|
||||
lower="-3.106"
|
||||
upper="3.106"
|
||||
effort="30"
|
||||
velocity="3.14" />
|
||||
</joint>
|
||||
<link
|
||||
name="link_4">
|
||||
<inertial>
|
||||
<origin
|
||||
xyz="-0.000005 -0.084658 0.004747"
|
||||
rpy="0 0 0" />
|
||||
<mass
|
||||
value="0.685" />
|
||||
<inertia
|
||||
ixx="0.001282444"
|
||||
ixy="-0.000000551"
|
||||
ixz="-0.000000630"
|
||||
iyy="0.000373013"
|
||||
iyz="-0.000232084"
|
||||
izz="0.001256177" />
|
||||
</inertial>
|
||||
<visual>
|
||||
<origin
|
||||
xyz="0 0 0"
|
||||
rpy="0 0 0" />
|
||||
<geometry>
|
||||
<mesh
|
||||
filename="meshes/link_4.STL" />
|
||||
</geometry>
|
||||
<material
|
||||
name="">
|
||||
<color
|
||||
rgba="1 1 1 1" />
|
||||
</material>
|
||||
</visual>
|
||||
<collision>
|
||||
<origin
|
||||
xyz="0 0 0"
|
||||
rpy="0 0 0" />
|
||||
<geometry>
|
||||
<mesh
|
||||
filename="meshes/link_4.STL" />
|
||||
</geometry>
|
||||
</collision>
|
||||
</link>
|
||||
<joint
|
||||
name="joint_4"
|
||||
type="revolute">
|
||||
<origin
|
||||
xyz="0 0 0"
|
||||
rpy="-1.5708 0 0" />
|
||||
<parent
|
||||
link="link_3" />
|
||||
<child
|
||||
link="link_4" />
|
||||
<axis
|
||||
xyz="0 0 1" />
|
||||
<limit
|
||||
lower="-2.356"
|
||||
upper="2.356"
|
||||
effort="30"
|
||||
velocity="3.14" />
|
||||
</joint>
|
||||
<link
|
||||
name="link_5">
|
||||
<inertial>
|
||||
<origin
|
||||
xyz="0.000078 -0.012937 -0.008781"
|
||||
rpy="0 0 0" />
|
||||
<mass
|
||||
value="0.619" />
|
||||
<inertia
|
||||
ixx="0.000627336"
|
||||
ixy="0.000001636"
|
||||
ixz="-0.000001345"
|
||||
iyy="0.000542455"
|
||||
iyz="0.000034970"
|
||||
izz="0.000370291" />
|
||||
</inertial>
|
||||
<visual>
|
||||
<origin
|
||||
xyz="0 0 0"
|
||||
rpy="0 0 0" />
|
||||
<geometry>
|
||||
<mesh
|
||||
filename="meshes/link_5.STL" />
|
||||
</geometry>
|
||||
<material
|
||||
name="">
|
||||
<color
|
||||
rgba="1 1 1 1" />
|
||||
</material>
|
||||
</visual>
|
||||
<collision>
|
||||
<origin
|
||||
xyz="0 0 0"
|
||||
rpy="0 0 0" />
|
||||
<geometry>
|
||||
<mesh
|
||||
filename="meshes/link_5.STL" />
|
||||
</geometry>
|
||||
</collision>
|
||||
</link>
|
||||
<joint
|
||||
name="joint_5"
|
||||
type="revolute">
|
||||
<origin
|
||||
xyz="0 -0.21 0"
|
||||
rpy="1.5708 0 0" />
|
||||
<parent
|
||||
link="link_4" />
|
||||
<child
|
||||
link="link_5" />
|
||||
<axis
|
||||
xyz="0 0 1" />
|
||||
<limit
|
||||
lower="-3.106"
|
||||
upper="3.106"
|
||||
effort="10"
|
||||
velocity="3.14" />
|
||||
</joint>
|
||||
<link
|
||||
name="link_6">
|
||||
<inertial>
|
||||
<origin
|
||||
xyz="-0.000014 -0.078524 0.002819"
|
||||
rpy="0 0 0" />
|
||||
<mass
|
||||
value="0.602" />
|
||||
<inertia
|
||||
ixx="0.000780774"
|
||||
ixy="-0.000000121"
|
||||
ixz="-0.000000469"
|
||||
iyy="0.000289973"
|
||||
iyz="-0.000120513"
|
||||
izz="0.000763955" />
|
||||
</inertial>
|
||||
<visual>
|
||||
<origin
|
||||
xyz="0 0 0"
|
||||
rpy="0 0 0" />
|
||||
<geometry>
|
||||
<mesh
|
||||
filename="meshes/link_6.STL" />
|
||||
</geometry>
|
||||
<material
|
||||
name="">
|
||||
<color
|
||||
rgba="1 1 1 1" />
|
||||
</material>
|
||||
</visual>
|
||||
<collision>
|
||||
<origin
|
||||
xyz="0 0 0"
|
||||
rpy="0 0 0" />
|
||||
<geometry>
|
||||
<mesh
|
||||
filename="meshes/link_6.STL" />
|
||||
</geometry>
|
||||
</collision>
|
||||
</link>
|
||||
<joint
|
||||
name="joint_6"
|
||||
type="revolute">
|
||||
<origin
|
||||
xyz="0 0 0"
|
||||
rpy="-1.5708 0 0" />
|
||||
<parent
|
||||
link="link_5" />
|
||||
<child
|
||||
link="link_6" />
|
||||
<axis
|
||||
xyz="0 0 1" />
|
||||
<limit
|
||||
lower="-2.234"
|
||||
upper="2.234"
|
||||
effort="10"
|
||||
velocity="3.14" />
|
||||
</joint>
|
||||
<link
|
||||
name="link_7">
|
||||
<inertial>
|
||||
<origin
|
||||
xyz="0.001094 -0.000077 -0.010119"
|
||||
rpy="0 0 0" />
|
||||
<mass
|
||||
value="0.107" />
|
||||
<inertia
|
||||
ixx="0.000044123"
|
||||
ixy="-0.000000064"
|
||||
ixz="0.0000003"
|
||||
iyy="0.000035078"
|
||||
iyz="-0.000000029"
|
||||
izz="0.000065445" />
|
||||
</inertial>
|
||||
<visual>
|
||||
<origin
|
||||
xyz="0 0 0"
|
||||
rpy="0 0 0" />
|
||||
<geometry>
|
||||
<mesh
|
||||
filename="meshes/link_7.STL" />
|
||||
</geometry>
|
||||
<material
|
||||
name="">
|
||||
<color
|
||||
rgba="1 1 1 1" />
|
||||
</material>
|
||||
</visual>
|
||||
<collision>
|
||||
<origin
|
||||
xyz="0 0 0"
|
||||
rpy="0 0 0" />
|
||||
<geometry>
|
||||
<mesh
|
||||
filename="meshes/link_7.STL" />
|
||||
</geometry>
|
||||
</collision>
|
||||
</link>
|
||||
<joint
|
||||
name="joint_7"
|
||||
type="revolute">
|
||||
<origin
|
||||
xyz="0 -0.144 0"
|
||||
rpy="1.5708 0 0" />
|
||||
<parent
|
||||
link="link_6" />
|
||||
<child
|
||||
link="link_7" />
|
||||
<axis
|
||||
xyz="0 0 1" />
|
||||
<limit
|
||||
lower="-6.28"
|
||||
upper="6.28"
|
||||
effort="10"
|
||||
velocity="3.14" />
|
||||
</joint>
|
||||
<!-- Scissor end-effector -->
|
||||
<link name="gripper_link">
|
||||
<inertial>
|
||||
<!-- Replace these values with CAD-derived mass properties -->
|
||||
<origin xyz="0 0 0" rpy="0 0 0" />
|
||||
<mass value="0.1" />
|
||||
<inertia
|
||||
ixx="0.0001"
|
||||
ixy="0"
|
||||
ixz="0"
|
||||
iyy="0.0001"
|
||||
iyz="0"
|
||||
izz="0.0001" />
|
||||
</inertial>
|
||||
|
||||
<visual>
|
||||
<origin xyz="0 0 0" rpy="0 0 0" />
|
||||
<geometry>
|
||||
<mesh
|
||||
filename="meshes/OmniPic.stl"
|
||||
scale="1 1 1" />
|
||||
</geometry>
|
||||
<material name="OmniPic_material">
|
||||
<color rgba="0.7 0.7 0.7 1" />
|
||||
</material>
|
||||
</visual>
|
||||
|
||||
<collision>
|
||||
<origin xyz="0 0 0" rpy="0 0 0" />
|
||||
<geometry>
|
||||
<mesh
|
||||
filename="meshes/OmniPic.stl"
|
||||
scale="1 1 1" />
|
||||
</geometry>
|
||||
</collision>
|
||||
</link>
|
||||
|
||||
<!-- Rigidly attach the gripper to the final wrist link -->
|
||||
<joint name="OmniPic_fixed_joint" type="fixed">
|
||||
<parent link="link_7" />
|
||||
<child link="gripper_link" />
|
||||
<origin xyz="0 0 0" rpy="0 0 0" />
|
||||
</joint>
|
||||
|
||||
|
||||
<link name="OmniPic_tcp"/>
|
||||
|
||||
<joint name="OmniPic_tcp_fixed" type="fixed">
|
||||
<parent link="gripper_link"/>
|
||||
<child link="OmniPic_tcp"/>
|
||||
<origin xyz="0 0 0.14" rpy="0 0 0"/>
|
||||
</joint>
|
||||
|
||||
|
||||
</robot>
|
||||
@@ -0,0 +1,516 @@
|
||||
<?xml version="1.0" encoding="utf-8"?>
|
||||
<!-- This URDF was automatically created by SolidWorks to URDF Exporter! Originally created by Stephen Brawner (brawner@gmail.com)
|
||||
Commit Version: 1.6.0-1-g15f4949 Build Version: 1.6.7594.29634
|
||||
For more information, please see http://wiki.ros.org/sw_urdf_exporter -->
|
||||
<robot
|
||||
name="RM75-B">
|
||||
<link
|
||||
name="base_link">
|
||||
<inertial>
|
||||
<origin
|
||||
xyz="0.00049987 5.2709E-05 0.060019"
|
||||
rpy="0 0 0" />
|
||||
<mass
|
||||
value="1.862" />
|
||||
<inertia
|
||||
ixx="0.0017232"
|
||||
ixy="-3.1058E-06"
|
||||
ixz="-3.7924E-05"
|
||||
iyy="0.0017051"
|
||||
iyz="1.3691E-06"
|
||||
izz="0.00090158" />
|
||||
</inertial>
|
||||
<visual>
|
||||
<origin
|
||||
xyz="0 0 0"
|
||||
rpy="0 0 0" />
|
||||
<geometry>
|
||||
<mesh
|
||||
filename="meshes/base_link.STL" />
|
||||
</geometry>
|
||||
<material
|
||||
name="">
|
||||
<color
|
||||
rgba="1 1 1 1" />
|
||||
</material>
|
||||
</visual>
|
||||
<collision>
|
||||
<origin
|
||||
xyz="0 0 0"
|
||||
rpy="0 0 0" />
|
||||
<geometry>
|
||||
<mesh
|
||||
filename="meshes/base_link.STL" />
|
||||
</geometry>
|
||||
</collision>
|
||||
</link>
|
||||
<link
|
||||
name="link_1">
|
||||
<inertial>
|
||||
<origin
|
||||
xyz="0.000241 -0.013273 -0.00995"
|
||||
rpy="0 0 0" />
|
||||
<mass
|
||||
value="1.574" />
|
||||
<inertia
|
||||
ixx="0.002487573"
|
||||
ixy="0.000009663"
|
||||
ixz="-0.000007909"
|
||||
iyy="0.002321038"
|
||||
iyz="0.000179393"
|
||||
izz="0.001450554" />
|
||||
</inertial>
|
||||
<visual>
|
||||
<origin
|
||||
xyz="0 0 0"
|
||||
rpy="0 0 0" />
|
||||
<geometry>
|
||||
<mesh
|
||||
filename="meshes/link_1.STL" />
|
||||
</geometry>
|
||||
<material
|
||||
name="">
|
||||
<color
|
||||
rgba="1 1 1 1" />
|
||||
</material>
|
||||
</visual>
|
||||
<collision>
|
||||
<origin
|
||||
xyz="0 0 0"
|
||||
rpy="0 0 0" />
|
||||
<geometry>
|
||||
<mesh
|
||||
filename="meshes/link_1.STL" />
|
||||
</geometry>
|
||||
</collision>
|
||||
</link>
|
||||
<joint
|
||||
name="joint_1"
|
||||
type="revolute">
|
||||
<origin
|
||||
xyz="0 0 0.2405"
|
||||
rpy="0 0 0" />
|
||||
<parent
|
||||
link="base_link" />
|
||||
<child
|
||||
link="link_1" />
|
||||
<axis
|
||||
xyz="0 0 1" />
|
||||
<limit
|
||||
lower="-3.106"
|
||||
upper="3.106"
|
||||
effort="60"
|
||||
velocity="3.14" />
|
||||
</joint>
|
||||
<link
|
||||
name="link_2">
|
||||
<inertial>
|
||||
<origin
|
||||
xyz="-0.000357 -0.106789 0.005329"
|
||||
rpy="0 0 0" />
|
||||
<mass
|
||||
value="1.217" />
|
||||
<inertia
|
||||
ixx="0.003494121"
|
||||
ixy="0.000002921"
|
||||
ixz="-0.000005613"
|
||||
iyy="0.000892721"
|
||||
iyz="-0.000583884"
|
||||
izz="0.003444080" />
|
||||
</inertial>
|
||||
<visual>
|
||||
<origin
|
||||
xyz="0 0 0"
|
||||
rpy="0 0 0" />
|
||||
<geometry>
|
||||
<mesh
|
||||
filename="meshes/link_2.STL" />
|
||||
</geometry>
|
||||
<material
|
||||
name="">
|
||||
<color
|
||||
rgba="1 1 1 1" />
|
||||
</material>
|
||||
</visual>
|
||||
<collision>
|
||||
<origin
|
||||
xyz="0 0 0"
|
||||
rpy="0 0 0" />
|
||||
<geometry>
|
||||
<mesh
|
||||
filename="meshes/link_2.STL" />
|
||||
</geometry>
|
||||
</collision>
|
||||
</link>
|
||||
<joint
|
||||
name="joint_2"
|
||||
type="revolute">
|
||||
<origin
|
||||
xyz="0 0 0"
|
||||
rpy="-1.5708 0 0" />
|
||||
<parent
|
||||
link="link_1" />
|
||||
<child
|
||||
link="link_2" />
|
||||
<axis
|
||||
xyz="0 0 1" />
|
||||
<limit
|
||||
lower="-2.2689"
|
||||
upper="2.2689"
|
||||
effort="60"
|
||||
velocity="3.14" />
|
||||
</joint>
|
||||
<link
|
||||
name="link_3">
|
||||
<inertial>
|
||||
<origin
|
||||
xyz="0.000003 -0.01398 -0.011324"
|
||||
rpy="0 0 0" />
|
||||
<mass
|
||||
value="1.11" />
|
||||
<inertia
|
||||
ixx="0.001836663"
|
||||
ixy="0.000002259"
|
||||
ixz="-0.000004216"
|
||||
iyy="0.001498875"
|
||||
iyz="0.000037167"
|
||||
izz="0.001062545" />
|
||||
</inertial>
|
||||
<visual>
|
||||
<origin
|
||||
xyz="0 0 0"
|
||||
rpy="0 0 0" />
|
||||
<geometry>
|
||||
<mesh
|
||||
filename="meshes/link_3.STL" />
|
||||
</geometry>
|
||||
<material
|
||||
name="">
|
||||
<color
|
||||
rgba="1 1 1 1" />
|
||||
</material>
|
||||
</visual>
|
||||
<collision>
|
||||
<origin
|
||||
xyz="0 0 0"
|
||||
rpy="0 0 0" />
|
||||
<geometry>
|
||||
<mesh
|
||||
filename="meshes/link_3.STL" />
|
||||
</geometry>
|
||||
</collision>
|
||||
</link>
|
||||
<joint
|
||||
name="joint_3"
|
||||
type="revolute">
|
||||
<origin
|
||||
xyz="0 -0.256 0"
|
||||
rpy="1.5708 0 0" />
|
||||
<parent
|
||||
link="link_2" />
|
||||
<child
|
||||
link="link_3" />
|
||||
<axis
|
||||
xyz="0 0 1" />
|
||||
<limit
|
||||
lower="-3.106"
|
||||
upper="3.106"
|
||||
effort="30"
|
||||
velocity="3.14" />
|
||||
</joint>
|
||||
<link
|
||||
name="link_4">
|
||||
<inertial>
|
||||
<origin
|
||||
xyz="-0.000005 -0.084658 0.004747"
|
||||
rpy="0 0 0" />
|
||||
<mass
|
||||
value="0.685" />
|
||||
<inertia
|
||||
ixx="0.001282444"
|
||||
ixy="-0.000000551"
|
||||
ixz="-0.000000630"
|
||||
iyy="0.000373013"
|
||||
iyz="-0.000232084"
|
||||
izz="0.001256177" />
|
||||
</inertial>
|
||||
<visual>
|
||||
<origin
|
||||
xyz="0 0 0"
|
||||
rpy="0 0 0" />
|
||||
<geometry>
|
||||
<mesh
|
||||
filename="meshes/link_4.STL" />
|
||||
</geometry>
|
||||
<material
|
||||
name="">
|
||||
<color
|
||||
rgba="1 1 1 1" />
|
||||
</material>
|
||||
</visual>
|
||||
<collision>
|
||||
<origin
|
||||
xyz="0 0 0"
|
||||
rpy="0 0 0" />
|
||||
<geometry>
|
||||
<mesh
|
||||
filename="meshes/link_4.STL" />
|
||||
</geometry>
|
||||
</collision>
|
||||
</link>
|
||||
<joint
|
||||
name="joint_4"
|
||||
type="revolute">
|
||||
<origin
|
||||
xyz="0 0 0"
|
||||
rpy="-1.5708 0 0" />
|
||||
<parent
|
||||
link="link_3" />
|
||||
<child
|
||||
link="link_4" />
|
||||
<axis
|
||||
xyz="0 0 1" />
|
||||
<limit
|
||||
lower="-2.356"
|
||||
upper="2.356"
|
||||
effort="30"
|
||||
velocity="3.14" />
|
||||
</joint>
|
||||
<link
|
||||
name="link_5">
|
||||
<inertial>
|
||||
<origin
|
||||
xyz="0.000078 -0.012937 -0.008781"
|
||||
rpy="0 0 0" />
|
||||
<mass
|
||||
value="0.619" />
|
||||
<inertia
|
||||
ixx="0.000627336"
|
||||
ixy="0.000001636"
|
||||
ixz="-0.000001345"
|
||||
iyy="0.000542455"
|
||||
iyz="0.000034970"
|
||||
izz="0.000370291" />
|
||||
</inertial>
|
||||
<visual>
|
||||
<origin
|
||||
xyz="0 0 0"
|
||||
rpy="0 0 0" />
|
||||
<geometry>
|
||||
<mesh
|
||||
filename="meshes/link_5.STL" />
|
||||
</geometry>
|
||||
<material
|
||||
name="">
|
||||
<color
|
||||
rgba="1 1 1 1" />
|
||||
</material>
|
||||
</visual>
|
||||
<collision>
|
||||
<origin
|
||||
xyz="0 0 0"
|
||||
rpy="0 0 0" />
|
||||
<geometry>
|
||||
<mesh
|
||||
filename="meshes/link_5.STL" />
|
||||
</geometry>
|
||||
</collision>
|
||||
</link>
|
||||
<joint
|
||||
name="joint_5"
|
||||
type="revolute">
|
||||
<origin
|
||||
xyz="0 -0.21 0"
|
||||
rpy="1.5708 0 0" />
|
||||
<parent
|
||||
link="link_4" />
|
||||
<child
|
||||
link="link_5" />
|
||||
<axis
|
||||
xyz="0 0 1" />
|
||||
<limit
|
||||
lower="-3.106"
|
||||
upper="3.106"
|
||||
effort="10"
|
||||
velocity="3.14" />
|
||||
</joint>
|
||||
<link
|
||||
name="link_6">
|
||||
<inertial>
|
||||
<origin
|
||||
xyz="-0.000014 -0.078524 0.002819"
|
||||
rpy="0 0 0" />
|
||||
<mass
|
||||
value="0.602" />
|
||||
<inertia
|
||||
ixx="0.000780774"
|
||||
ixy="-0.000000121"
|
||||
ixz="-0.000000469"
|
||||
iyy="0.000289973"
|
||||
iyz="-0.000120513"
|
||||
izz="0.000763955" />
|
||||
</inertial>
|
||||
<visual>
|
||||
<origin
|
||||
xyz="0 0 0"
|
||||
rpy="0 0 0" />
|
||||
<geometry>
|
||||
<mesh
|
||||
filename="meshes/link_6.STL" />
|
||||
</geometry>
|
||||
<material
|
||||
name="">
|
||||
<color
|
||||
rgba="1 1 1 1" />
|
||||
</material>
|
||||
</visual>
|
||||
<collision>
|
||||
<origin
|
||||
xyz="0 0 0"
|
||||
rpy="0 0 0" />
|
||||
<geometry>
|
||||
<mesh
|
||||
filename="meshes/link_6.STL" />
|
||||
</geometry>
|
||||
</collision>
|
||||
</link>
|
||||
<joint
|
||||
name="joint_6"
|
||||
type="revolute">
|
||||
<origin
|
||||
xyz="0 0 0"
|
||||
rpy="-1.5708 0 0" />
|
||||
<parent
|
||||
link="link_5" />
|
||||
<child
|
||||
link="link_6" />
|
||||
<axis
|
||||
xyz="0 0 1" />
|
||||
<limit
|
||||
lower="-2.234"
|
||||
upper="2.234"
|
||||
effort="10"
|
||||
velocity="3.14" />
|
||||
</joint>
|
||||
<link
|
||||
name="link_7">
|
||||
<inertial>
|
||||
<origin
|
||||
xyz="0.001094 -0.000077 -0.010119"
|
||||
rpy="0 0 0" />
|
||||
<mass
|
||||
value="0.107" />
|
||||
<inertia
|
||||
ixx="0.000044123"
|
||||
ixy="-0.000000064"
|
||||
ixz="0.0000003"
|
||||
iyy="0.000035078"
|
||||
iyz="-0.000000029"
|
||||
izz="0.000065445" />
|
||||
</inertial>
|
||||
<visual>
|
||||
<origin
|
||||
xyz="0 0 0"
|
||||
rpy="0 0 0" />
|
||||
<geometry>
|
||||
<mesh
|
||||
filename="meshes/link_7.STL" />
|
||||
</geometry>
|
||||
<material
|
||||
name="">
|
||||
<color
|
||||
rgba="1 1 1 1" />
|
||||
</material>
|
||||
</visual>
|
||||
<collision>
|
||||
<origin
|
||||
xyz="0 0 0"
|
||||
rpy="0 0 0" />
|
||||
<geometry>
|
||||
<mesh
|
||||
filename="meshes/link_7.STL" />
|
||||
</geometry>
|
||||
</collision>
|
||||
</link>
|
||||
<joint
|
||||
name="joint_7"
|
||||
type="revolute">
|
||||
<origin
|
||||
xyz="0 -0.144 0"
|
||||
rpy="1.5708 0 0" />
|
||||
<parent
|
||||
link="link_6" />
|
||||
<child
|
||||
link="link_7" />
|
||||
<axis
|
||||
xyz="0 0 1" />
|
||||
<limit
|
||||
lower="-6.28"
|
||||
upper="6.28"
|
||||
effort="10"
|
||||
velocity="3.14" />
|
||||
</joint>
|
||||
<!-- Scissor end-effector -->
|
||||
<link name="scissor_link">
|
||||
<inertial>
|
||||
<!-- Replace these values with CAD-derived mass properties -->
|
||||
<origin xyz="0 0 0" rpy="0 0 0" />
|
||||
<mass value="0.1" />
|
||||
<inertia
|
||||
ixx="0.0001"
|
||||
ixy="0"
|
||||
ixz="0"
|
||||
iyy="0.0001"
|
||||
iyz="0"
|
||||
izz="0.0001" />
|
||||
</inertial>
|
||||
|
||||
<visual>
|
||||
<origin xyz="0 0 0" rpy="0 0 0" />
|
||||
<geometry>
|
||||
<mesh
|
||||
filename="meshes/scissor.stl"
|
||||
scale="1 1 1" />
|
||||
</geometry>
|
||||
<material name="scissor_material">
|
||||
<color rgba="0.7 0.7 0.7 1" />
|
||||
</material>
|
||||
</visual>
|
||||
|
||||
<collision>
|
||||
<origin xyz="0 0 0" rpy="0 0 0" />
|
||||
<geometry>
|
||||
<mesh
|
||||
filename="meshes/scissor.stl"
|
||||
scale="1 1 1" />
|
||||
</geometry>
|
||||
</collision>
|
||||
</link>
|
||||
|
||||
<!-- Rigidly attach the scissor to the final wrist link -->
|
||||
<joint name="scissor_fixed_joint" type="fixed">
|
||||
<parent link="link_7" />
|
||||
<child link="scissor_link" />
|
||||
<origin xyz="0 -0.12 0.03" rpy="1.5707963 0 0" />
|
||||
</joint>
|
||||
|
||||
|
||||
<link name="scissor_tcp"/>
|
||||
|
||||
<joint name="scissor_tcp_fixed" type="fixed">
|
||||
<parent link="scissor_link"/>
|
||||
<child link="scissor_tcp"/>
|
||||
<origin xyz="0 0 0" rpy="0 0 0"/>
|
||||
</joint>
|
||||
|
||||
<link name="camera_tcp"/>
|
||||
|
||||
<joint name="camera_tcp_fixed" type="fixed">
|
||||
<parent link="scissor_link"/>
|
||||
<child link="camera_tcp"/>
|
||||
<origin xyz="0.042 0 -0.0755" rpy="0 0 1.5707963"/>
|
||||
</joint>
|
||||
|
||||
|
||||
|
||||
</robot>
|
||||
@@ -0,0 +1,516 @@
|
||||
<?xml version="1.0" encoding="utf-8"?>
|
||||
<!-- This URDF was automatically created by SolidWorks to URDF Exporter! Originally created by Stephen Brawner (brawner@gmail.com)
|
||||
Commit Version: 1.6.0-1-g15f4949 Build Version: 1.6.7594.29634
|
||||
For more information, please see http://wiki.ros.org/sw_urdf_exporter -->
|
||||
<robot
|
||||
name="RM75-B">
|
||||
<link
|
||||
name="base_link">
|
||||
<inertial>
|
||||
<origin
|
||||
xyz="0.00049987 5.2709E-05 0.060019"
|
||||
rpy="0 0 0" />
|
||||
<mass
|
||||
value="1.862" />
|
||||
<inertia
|
||||
ixx="0.0017232"
|
||||
ixy="-3.1058E-06"
|
||||
ixz="-3.7924E-05"
|
||||
iyy="0.0017051"
|
||||
iyz="1.3691E-06"
|
||||
izz="0.00090158" />
|
||||
</inertial>
|
||||
<visual>
|
||||
<origin
|
||||
xyz="0 0 0"
|
||||
rpy="0 0 0" />
|
||||
<geometry>
|
||||
<mesh
|
||||
filename="meshes/base_link.STL" />
|
||||
</geometry>
|
||||
<material
|
||||
name="">
|
||||
<color
|
||||
rgba="1 1 1 1" />
|
||||
</material>
|
||||
</visual>
|
||||
<collision>
|
||||
<origin
|
||||
xyz="0 0 0"
|
||||
rpy="0 0 0" />
|
||||
<geometry>
|
||||
<mesh
|
||||
filename="meshes/base_link.STL" />
|
||||
</geometry>
|
||||
</collision>
|
||||
</link>
|
||||
<link
|
||||
name="link_1">
|
||||
<inertial>
|
||||
<origin
|
||||
xyz="0.000241 -0.013273 -0.00995"
|
||||
rpy="0 0 0" />
|
||||
<mass
|
||||
value="1.574" />
|
||||
<inertia
|
||||
ixx="0.002487573"
|
||||
ixy="0.000009663"
|
||||
ixz="-0.000007909"
|
||||
iyy="0.002321038"
|
||||
iyz="0.000179393"
|
||||
izz="0.001450554" />
|
||||
</inertial>
|
||||
<visual>
|
||||
<origin
|
||||
xyz="0 0 0"
|
||||
rpy="0 0 0" />
|
||||
<geometry>
|
||||
<mesh
|
||||
filename="meshes/link_1.STL" />
|
||||
</geometry>
|
||||
<material
|
||||
name="">
|
||||
<color
|
||||
rgba="1 1 1 1" />
|
||||
</material>
|
||||
</visual>
|
||||
<collision>
|
||||
<origin
|
||||
xyz="0 0 0"
|
||||
rpy="0 0 0" />
|
||||
<geometry>
|
||||
<mesh
|
||||
filename="meshes/link_1.STL" />
|
||||
</geometry>
|
||||
</collision>
|
||||
</link>
|
||||
<joint
|
||||
name="joint_1"
|
||||
type="revolute">
|
||||
<origin
|
||||
xyz="0 0 0.2405"
|
||||
rpy="0 0 0" />
|
||||
<parent
|
||||
link="base_link" />
|
||||
<child
|
||||
link="link_1" />
|
||||
<axis
|
||||
xyz="0 0 1" />
|
||||
<limit
|
||||
lower="-3.106"
|
||||
upper="3.106"
|
||||
effort="60"
|
||||
velocity="3.14" />
|
||||
</joint>
|
||||
<link
|
||||
name="link_2">
|
||||
<inertial>
|
||||
<origin
|
||||
xyz="-0.000357 -0.106789 0.005329"
|
||||
rpy="0 0 0" />
|
||||
<mass
|
||||
value="1.217" />
|
||||
<inertia
|
||||
ixx="0.003494121"
|
||||
ixy="0.000002921"
|
||||
ixz="-0.000005613"
|
||||
iyy="0.000892721"
|
||||
iyz="-0.000583884"
|
||||
izz="0.003444080" />
|
||||
</inertial>
|
||||
<visual>
|
||||
<origin
|
||||
xyz="0 0 0"
|
||||
rpy="0 0 0" />
|
||||
<geometry>
|
||||
<mesh
|
||||
filename="meshes/link_2.STL" />
|
||||
</geometry>
|
||||
<material
|
||||
name="">
|
||||
<color
|
||||
rgba="1 1 1 1" />
|
||||
</material>
|
||||
</visual>
|
||||
<collision>
|
||||
<origin
|
||||
xyz="0 0 0"
|
||||
rpy="0 0 0" />
|
||||
<geometry>
|
||||
<mesh
|
||||
filename="meshes/link_2.STL" />
|
||||
</geometry>
|
||||
</collision>
|
||||
</link>
|
||||
<joint
|
||||
name="joint_2"
|
||||
type="revolute">
|
||||
<origin
|
||||
xyz="0 0 0"
|
||||
rpy="-1.5708 0 0" />
|
||||
<parent
|
||||
link="link_1" />
|
||||
<child
|
||||
link="link_2" />
|
||||
<axis
|
||||
xyz="0 0 1" />
|
||||
<limit
|
||||
lower="-2.2689"
|
||||
upper="2.2689"
|
||||
effort="60"
|
||||
velocity="3.14" />
|
||||
</joint>
|
||||
<link
|
||||
name="link_3">
|
||||
<inertial>
|
||||
<origin
|
||||
xyz="0.000003 -0.01398 -0.011324"
|
||||
rpy="0 0 0" />
|
||||
<mass
|
||||
value="1.11" />
|
||||
<inertia
|
||||
ixx="0.001836663"
|
||||
ixy="0.000002259"
|
||||
ixz="-0.000004216"
|
||||
iyy="0.001498875"
|
||||
iyz="0.000037167"
|
||||
izz="0.001062545" />
|
||||
</inertial>
|
||||
<visual>
|
||||
<origin
|
||||
xyz="0 0 0"
|
||||
rpy="0 0 0" />
|
||||
<geometry>
|
||||
<mesh
|
||||
filename="meshes/link_3.STL" />
|
||||
</geometry>
|
||||
<material
|
||||
name="">
|
||||
<color
|
||||
rgba="1 1 1 1" />
|
||||
</material>
|
||||
</visual>
|
||||
<collision>
|
||||
<origin
|
||||
xyz="0 0 0"
|
||||
rpy="0 0 0" />
|
||||
<geometry>
|
||||
<mesh
|
||||
filename="meshes/link_3.STL" />
|
||||
</geometry>
|
||||
</collision>
|
||||
</link>
|
||||
<joint
|
||||
name="joint_3"
|
||||
type="revolute">
|
||||
<origin
|
||||
xyz="0 -0.256 0"
|
||||
rpy="1.5708 0 0" />
|
||||
<parent
|
||||
link="link_2" />
|
||||
<child
|
||||
link="link_3" />
|
||||
<axis
|
||||
xyz="0 0 1" />
|
||||
<limit
|
||||
lower="-3.106"
|
||||
upper="3.106"
|
||||
effort="30"
|
||||
velocity="3.14" />
|
||||
</joint>
|
||||
<link
|
||||
name="link_4">
|
||||
<inertial>
|
||||
<origin
|
||||
xyz="-0.000005 -0.084658 0.004747"
|
||||
rpy="0 0 0" />
|
||||
<mass
|
||||
value="0.685" />
|
||||
<inertia
|
||||
ixx="0.001282444"
|
||||
ixy="-0.000000551"
|
||||
ixz="-0.000000630"
|
||||
iyy="0.000373013"
|
||||
iyz="-0.000232084"
|
||||
izz="0.001256177" />
|
||||
</inertial>
|
||||
<visual>
|
||||
<origin
|
||||
xyz="0 0 0"
|
||||
rpy="0 0 0" />
|
||||
<geometry>
|
||||
<mesh
|
||||
filename="meshes/link_4.STL" />
|
||||
</geometry>
|
||||
<material
|
||||
name="">
|
||||
<color
|
||||
rgba="1 1 1 1" />
|
||||
</material>
|
||||
</visual>
|
||||
<collision>
|
||||
<origin
|
||||
xyz="0 0 0"
|
||||
rpy="0 0 0" />
|
||||
<geometry>
|
||||
<mesh
|
||||
filename="meshes/link_4.STL" />
|
||||
</geometry>
|
||||
</collision>
|
||||
</link>
|
||||
<joint
|
||||
name="joint_4"
|
||||
type="revolute">
|
||||
<origin
|
||||
xyz="0 0 0"
|
||||
rpy="-1.5708 0 0" />
|
||||
<parent
|
||||
link="link_3" />
|
||||
<child
|
||||
link="link_4" />
|
||||
<axis
|
||||
xyz="0 0 1" />
|
||||
<limit
|
||||
lower="-2.356"
|
||||
upper="2.356"
|
||||
effort="30"
|
||||
velocity="3.14" />
|
||||
</joint>
|
||||
<link
|
||||
name="link_5">
|
||||
<inertial>
|
||||
<origin
|
||||
xyz="0.000078 -0.012937 -0.008781"
|
||||
rpy="0 0 0" />
|
||||
<mass
|
||||
value="0.619" />
|
||||
<inertia
|
||||
ixx="0.000627336"
|
||||
ixy="0.000001636"
|
||||
ixz="-0.000001345"
|
||||
iyy="0.000542455"
|
||||
iyz="0.000034970"
|
||||
izz="0.000370291" />
|
||||
</inertial>
|
||||
<visual>
|
||||
<origin
|
||||
xyz="0 0 0"
|
||||
rpy="0 0 0" />
|
||||
<geometry>
|
||||
<mesh
|
||||
filename="meshes/link_5.STL" />
|
||||
</geometry>
|
||||
<material
|
||||
name="">
|
||||
<color
|
||||
rgba="1 1 1 1" />
|
||||
</material>
|
||||
</visual>
|
||||
<collision>
|
||||
<origin
|
||||
xyz="0 0 0"
|
||||
rpy="0 0 0" />
|
||||
<geometry>
|
||||
<mesh
|
||||
filename="meshes/link_5.STL" />
|
||||
</geometry>
|
||||
</collision>
|
||||
</link>
|
||||
<joint
|
||||
name="joint_5"
|
||||
type="revolute">
|
||||
<origin
|
||||
xyz="0 -0.21 0"
|
||||
rpy="1.5708 0 0" />
|
||||
<parent
|
||||
link="link_4" />
|
||||
<child
|
||||
link="link_5" />
|
||||
<axis
|
||||
xyz="0 0 1" />
|
||||
<limit
|
||||
lower="-3.106"
|
||||
upper="3.106"
|
||||
effort="10"
|
||||
velocity="3.14" />
|
||||
</joint>
|
||||
<link
|
||||
name="link_6">
|
||||
<inertial>
|
||||
<origin
|
||||
xyz="-0.000014 -0.078524 0.002819"
|
||||
rpy="0 0 0" />
|
||||
<mass
|
||||
value="0.602" />
|
||||
<inertia
|
||||
ixx="0.000780774"
|
||||
ixy="-0.000000121"
|
||||
ixz="-0.000000469"
|
||||
iyy="0.000289973"
|
||||
iyz="-0.000120513"
|
||||
izz="0.000763955" />
|
||||
</inertial>
|
||||
<visual>
|
||||
<origin
|
||||
xyz="0 0 0"
|
||||
rpy="0 0 0" />
|
||||
<geometry>
|
||||
<mesh
|
||||
filename="meshes/link_6.STL" />
|
||||
</geometry>
|
||||
<material
|
||||
name="">
|
||||
<color
|
||||
rgba="1 1 1 1" />
|
||||
</material>
|
||||
</visual>
|
||||
<collision>
|
||||
<origin
|
||||
xyz="0 0 0"
|
||||
rpy="0 0 0" />
|
||||
<geometry>
|
||||
<mesh
|
||||
filename="meshes/link_6.STL" />
|
||||
</geometry>
|
||||
</collision>
|
||||
</link>
|
||||
<joint
|
||||
name="joint_6"
|
||||
type="revolute">
|
||||
<origin
|
||||
xyz="0 0 0"
|
||||
rpy="-1.5708 0 0" />
|
||||
<parent
|
||||
link="link_5" />
|
||||
<child
|
||||
link="link_6" />
|
||||
<axis
|
||||
xyz="0 0 1" />
|
||||
<limit
|
||||
lower="-2.234"
|
||||
upper="2.234"
|
||||
effort="10"
|
||||
velocity="3.14" />
|
||||
</joint>
|
||||
<link
|
||||
name="link_7">
|
||||
<inertial>
|
||||
<origin
|
||||
xyz="0.001094 -0.000077 -0.010119"
|
||||
rpy="0 0 0" />
|
||||
<mass
|
||||
value="0.107" />
|
||||
<inertia
|
||||
ixx="0.000044123"
|
||||
ixy="-0.000000064"
|
||||
ixz="0.0000003"
|
||||
iyy="0.000035078"
|
||||
iyz="-0.000000029"
|
||||
izz="0.000065445" />
|
||||
</inertial>
|
||||
<visual>
|
||||
<origin
|
||||
xyz="0 0 0"
|
||||
rpy="0 0 0" />
|
||||
<geometry>
|
||||
<mesh
|
||||
filename="meshes/link_7.STL" />
|
||||
</geometry>
|
||||
<material
|
||||
name="">
|
||||
<color
|
||||
rgba="1 1 1 1" />
|
||||
</material>
|
||||
</visual>
|
||||
<collision>
|
||||
<origin
|
||||
xyz="0 0 0"
|
||||
rpy="0 0 0" />
|
||||
<geometry>
|
||||
<mesh
|
||||
filename="meshes/link_7.STL" />
|
||||
</geometry>
|
||||
</collision>
|
||||
</link>
|
||||
<joint
|
||||
name="joint_7"
|
||||
type="revolute">
|
||||
<origin
|
||||
xyz="0 -0.144 0"
|
||||
rpy="1.5708 0 0" />
|
||||
<parent
|
||||
link="link_6" />
|
||||
<child
|
||||
link="link_7" />
|
||||
<axis
|
||||
xyz="0 0 1" />
|
||||
<limit
|
||||
lower="-6.28"
|
||||
upper="6.28"
|
||||
effort="10"
|
||||
velocity="3.14" />
|
||||
</joint>
|
||||
<!-- Scissor end-effector -->
|
||||
<link name="scissor_link">
|
||||
<inertial>
|
||||
<!-- Replace these values with CAD-derived mass properties -->
|
||||
<origin xyz="0 0 0" rpy="0 0 0" />
|
||||
<mass value="0.1" />
|
||||
<inertia
|
||||
ixx="0.0001"
|
||||
ixy="0"
|
||||
ixz="0"
|
||||
iyy="0.0001"
|
||||
iyz="0"
|
||||
izz="0.0001" />
|
||||
</inertial>
|
||||
|
||||
<visual>
|
||||
<origin xyz="0 0 0" rpy="0 0 0" />
|
||||
<geometry>
|
||||
<mesh
|
||||
filename="meshes/scissor.stl"
|
||||
scale="1 1 1" />
|
||||
</geometry>
|
||||
<material name="scissor_material">
|
||||
<color rgba="0.7 0.7 0.7 1" />
|
||||
</material>
|
||||
</visual>
|
||||
|
||||
<collision>
|
||||
<origin xyz="0 0 0" rpy="0 0 0" />
|
||||
<geometry>
|
||||
<mesh
|
||||
filename="meshes/scissor.stl"
|
||||
scale="1 1 1" />
|
||||
</geometry>
|
||||
</collision>
|
||||
</link>
|
||||
|
||||
<!-- Rigidly attach the scissor to the final wrist link -->
|
||||
<joint name="scissor_fixed_joint" type="fixed">
|
||||
<parent link="link_7" />
|
||||
<child link="scissor_link" />
|
||||
<origin xyz="-0.12 0 0.063" rpy="0 -1.5707963 0" />
|
||||
</joint>
|
||||
|
||||
|
||||
<link name="scissor_tcp"/>
|
||||
|
||||
<joint name="scissor_tcp_fixed" type="fixed">
|
||||
<parent link="scissor_link"/>
|
||||
<child link="scissor_tcp"/>
|
||||
<origin xyz="0 0 0" rpy="0 0 0"/>
|
||||
</joint>
|
||||
|
||||
<link name="camera_tcp"/>
|
||||
|
||||
<joint name="camera_tcp_fixed" type="fixed">
|
||||
<parent link="scissor_link"/>
|
||||
<child link="camera_tcp"/>
|
||||
<origin xyz="0.042 0 -0.0755" rpy="0 0 1.57"/>
|
||||
</joint>
|
||||
|
||||
|
||||
|
||||
</robot>
|
||||
@@ -0,0 +1,516 @@
|
||||
<?xml version="1.0" encoding="utf-8"?>
|
||||
<!-- This URDF was automatically created by SolidWorks to URDF Exporter! Originally created by Stephen Brawner (brawner@gmail.com)
|
||||
Commit Version: 1.6.0-1-g15f4949 Build Version: 1.6.7594.29634
|
||||
For more information, please see http://wiki.ros.org/sw_urdf_exporter -->
|
||||
<robot
|
||||
name="RM75-B">
|
||||
<link
|
||||
name="base_link">
|
||||
<inertial>
|
||||
<origin
|
||||
xyz="0.00049987 5.2709E-05 0.060019"
|
||||
rpy="0 0 0" />
|
||||
<mass
|
||||
value="1.862" />
|
||||
<inertia
|
||||
ixx="0.0017232"
|
||||
ixy="-3.1058E-06"
|
||||
ixz="-3.7924E-05"
|
||||
iyy="0.0017051"
|
||||
iyz="1.3691E-06"
|
||||
izz="0.00090158" />
|
||||
</inertial>
|
||||
<visual>
|
||||
<origin
|
||||
xyz="0 0 0"
|
||||
rpy="0 0 0" />
|
||||
<geometry>
|
||||
<mesh
|
||||
filename="meshes/base_link.STL" />
|
||||
</geometry>
|
||||
<material
|
||||
name="">
|
||||
<color
|
||||
rgba="1 1 1 1" />
|
||||
</material>
|
||||
</visual>
|
||||
<collision>
|
||||
<origin
|
||||
xyz="0 0 0"
|
||||
rpy="0 0 0" />
|
||||
<geometry>
|
||||
<mesh
|
||||
filename="meshes/base_link.STL" />
|
||||
</geometry>
|
||||
</collision>
|
||||
</link>
|
||||
<link
|
||||
name="link_1">
|
||||
<inertial>
|
||||
<origin
|
||||
xyz="0.000241 -0.013273 -0.00995"
|
||||
rpy="0 0 0" />
|
||||
<mass
|
||||
value="1.574" />
|
||||
<inertia
|
||||
ixx="0.002487573"
|
||||
ixy="0.000009663"
|
||||
ixz="-0.000007909"
|
||||
iyy="0.002321038"
|
||||
iyz="0.000179393"
|
||||
izz="0.001450554" />
|
||||
</inertial>
|
||||
<visual>
|
||||
<origin
|
||||
xyz="0 0 0"
|
||||
rpy="0 0 0" />
|
||||
<geometry>
|
||||
<mesh
|
||||
filename="meshes/link_1.STL" />
|
||||
</geometry>
|
||||
<material
|
||||
name="">
|
||||
<color
|
||||
rgba="1 1 1 1" />
|
||||
</material>
|
||||
</visual>
|
||||
<collision>
|
||||
<origin
|
||||
xyz="0 0 0"
|
||||
rpy="0 0 0" />
|
||||
<geometry>
|
||||
<mesh
|
||||
filename="meshes/link_1.STL" />
|
||||
</geometry>
|
||||
</collision>
|
||||
</link>
|
||||
<joint
|
||||
name="joint_1"
|
||||
type="revolute">
|
||||
<origin
|
||||
xyz="0 0 0.2405"
|
||||
rpy="0 0 0" />
|
||||
<parent
|
||||
link="base_link" />
|
||||
<child
|
||||
link="link_1" />
|
||||
<axis
|
||||
xyz="0 0 1" />
|
||||
<limit
|
||||
lower="-3.106"
|
||||
upper="3.106"
|
||||
effort="60"
|
||||
velocity="3.14" />
|
||||
</joint>
|
||||
<link
|
||||
name="link_2">
|
||||
<inertial>
|
||||
<origin
|
||||
xyz="-0.000357 -0.106789 0.005329"
|
||||
rpy="0 0 0" />
|
||||
<mass
|
||||
value="1.217" />
|
||||
<inertia
|
||||
ixx="0.003494121"
|
||||
ixy="0.000002921"
|
||||
ixz="-0.000005613"
|
||||
iyy="0.000892721"
|
||||
iyz="-0.000583884"
|
||||
izz="0.003444080" />
|
||||
</inertial>
|
||||
<visual>
|
||||
<origin
|
||||
xyz="0 0 0"
|
||||
rpy="0 0 0" />
|
||||
<geometry>
|
||||
<mesh
|
||||
filename="meshes/link_2.STL" />
|
||||
</geometry>
|
||||
<material
|
||||
name="">
|
||||
<color
|
||||
rgba="1 1 1 1" />
|
||||
</material>
|
||||
</visual>
|
||||
<collision>
|
||||
<origin
|
||||
xyz="0 0 0"
|
||||
rpy="0 0 0" />
|
||||
<geometry>
|
||||
<mesh
|
||||
filename="meshes/link_2.STL" />
|
||||
</geometry>
|
||||
</collision>
|
||||
</link>
|
||||
<joint
|
||||
name="joint_2"
|
||||
type="revolute">
|
||||
<origin
|
||||
xyz="0 0 0"
|
||||
rpy="-1.5708 0 0" />
|
||||
<parent
|
||||
link="link_1" />
|
||||
<child
|
||||
link="link_2" />
|
||||
<axis
|
||||
xyz="0 0 1" />
|
||||
<limit
|
||||
lower="-2.2689"
|
||||
upper="2.2689"
|
||||
effort="60"
|
||||
velocity="3.14" />
|
||||
</joint>
|
||||
<link
|
||||
name="link_3">
|
||||
<inertial>
|
||||
<origin
|
||||
xyz="0.000003 -0.01398 -0.011324"
|
||||
rpy="0 0 0" />
|
||||
<mass
|
||||
value="1.11" />
|
||||
<inertia
|
||||
ixx="0.001836663"
|
||||
ixy="0.000002259"
|
||||
ixz="-0.000004216"
|
||||
iyy="0.001498875"
|
||||
iyz="0.000037167"
|
||||
izz="0.001062545" />
|
||||
</inertial>
|
||||
<visual>
|
||||
<origin
|
||||
xyz="0 0 0"
|
||||
rpy="0 0 0" />
|
||||
<geometry>
|
||||
<mesh
|
||||
filename="meshes/link_3.STL" />
|
||||
</geometry>
|
||||
<material
|
||||
name="">
|
||||
<color
|
||||
rgba="1 1 1 1" />
|
||||
</material>
|
||||
</visual>
|
||||
<collision>
|
||||
<origin
|
||||
xyz="0 0 0"
|
||||
rpy="0 0 0" />
|
||||
<geometry>
|
||||
<mesh
|
||||
filename="meshes/link_3.STL" />
|
||||
</geometry>
|
||||
</collision>
|
||||
</link>
|
||||
<joint
|
||||
name="joint_3"
|
||||
type="revolute">
|
||||
<origin
|
||||
xyz="0 -0.256 0"
|
||||
rpy="1.5708 0 0" />
|
||||
<parent
|
||||
link="link_2" />
|
||||
<child
|
||||
link="link_3" />
|
||||
<axis
|
||||
xyz="0 0 1" />
|
||||
<limit
|
||||
lower="-3.106"
|
||||
upper="3.106"
|
||||
effort="30"
|
||||
velocity="3.14" />
|
||||
</joint>
|
||||
<link
|
||||
name="link_4">
|
||||
<inertial>
|
||||
<origin
|
||||
xyz="-0.000005 -0.084658 0.004747"
|
||||
rpy="0 0 0" />
|
||||
<mass
|
||||
value="0.685" />
|
||||
<inertia
|
||||
ixx="0.001282444"
|
||||
ixy="-0.000000551"
|
||||
ixz="-0.000000630"
|
||||
iyy="0.000373013"
|
||||
iyz="-0.000232084"
|
||||
izz="0.001256177" />
|
||||
</inertial>
|
||||
<visual>
|
||||
<origin
|
||||
xyz="0 0 0"
|
||||
rpy="0 0 0" />
|
||||
<geometry>
|
||||
<mesh
|
||||
filename="meshes/link_4.STL" />
|
||||
</geometry>
|
||||
<material
|
||||
name="">
|
||||
<color
|
||||
rgba="1 1 1 1" />
|
||||
</material>
|
||||
</visual>
|
||||
<collision>
|
||||
<origin
|
||||
xyz="0 0 0"
|
||||
rpy="0 0 0" />
|
||||
<geometry>
|
||||
<mesh
|
||||
filename="meshes/link_4.STL" />
|
||||
</geometry>
|
||||
</collision>
|
||||
</link>
|
||||
<joint
|
||||
name="joint_4"
|
||||
type="revolute">
|
||||
<origin
|
||||
xyz="0 0 0"
|
||||
rpy="-1.5708 0 0" />
|
||||
<parent
|
||||
link="link_3" />
|
||||
<child
|
||||
link="link_4" />
|
||||
<axis
|
||||
xyz="0 0 1" />
|
||||
<limit
|
||||
lower="-2.356"
|
||||
upper="2.356"
|
||||
effort="30"
|
||||
velocity="3.14" />
|
||||
</joint>
|
||||
<link
|
||||
name="link_5">
|
||||
<inertial>
|
||||
<origin
|
||||
xyz="0.000078 -0.012937 -0.008781"
|
||||
rpy="0 0 0" />
|
||||
<mass
|
||||
value="0.619" />
|
||||
<inertia
|
||||
ixx="0.000627336"
|
||||
ixy="0.000001636"
|
||||
ixz="-0.000001345"
|
||||
iyy="0.000542455"
|
||||
iyz="0.000034970"
|
||||
izz="0.000370291" />
|
||||
</inertial>
|
||||
<visual>
|
||||
<origin
|
||||
xyz="0 0 0"
|
||||
rpy="0 0 0" />
|
||||
<geometry>
|
||||
<mesh
|
||||
filename="meshes/link_5.STL" />
|
||||
</geometry>
|
||||
<material
|
||||
name="">
|
||||
<color
|
||||
rgba="1 1 1 1" />
|
||||
</material>
|
||||
</visual>
|
||||
<collision>
|
||||
<origin
|
||||
xyz="0 0 0"
|
||||
rpy="0 0 0" />
|
||||
<geometry>
|
||||
<mesh
|
||||
filename="meshes/link_5.STL" />
|
||||
</geometry>
|
||||
</collision>
|
||||
</link>
|
||||
<joint
|
||||
name="joint_5"
|
||||
type="revolute">
|
||||
<origin
|
||||
xyz="0 -0.21 0"
|
||||
rpy="1.5708 0 0" />
|
||||
<parent
|
||||
link="link_4" />
|
||||
<child
|
||||
link="link_5" />
|
||||
<axis
|
||||
xyz="0 0 1" />
|
||||
<limit
|
||||
lower="-3.106"
|
||||
upper="3.106"
|
||||
effort="10"
|
||||
velocity="3.14" />
|
||||
</joint>
|
||||
<link
|
||||
name="link_6">
|
||||
<inertial>
|
||||
<origin
|
||||
xyz="-0.000014 -0.078524 0.002819"
|
||||
rpy="0 0 0" />
|
||||
<mass
|
||||
value="0.602" />
|
||||
<inertia
|
||||
ixx="0.000780774"
|
||||
ixy="-0.000000121"
|
||||
ixz="-0.000000469"
|
||||
iyy="0.000289973"
|
||||
iyz="-0.000120513"
|
||||
izz="0.000763955" />
|
||||
</inertial>
|
||||
<visual>
|
||||
<origin
|
||||
xyz="0 0 0"
|
||||
rpy="0 0 0" />
|
||||
<geometry>
|
||||
<mesh
|
||||
filename="meshes/link_6.STL" />
|
||||
</geometry>
|
||||
<material
|
||||
name="">
|
||||
<color
|
||||
rgba="1 1 1 1" />
|
||||
</material>
|
||||
</visual>
|
||||
<collision>
|
||||
<origin
|
||||
xyz="0 0 0"
|
||||
rpy="0 0 0" />
|
||||
<geometry>
|
||||
<mesh
|
||||
filename="meshes/link_6.STL" />
|
||||
</geometry>
|
||||
</collision>
|
||||
</link>
|
||||
<joint
|
||||
name="joint_6"
|
||||
type="revolute">
|
||||
<origin
|
||||
xyz="0 0 0"
|
||||
rpy="-1.5708 0 0" />
|
||||
<parent
|
||||
link="link_5" />
|
||||
<child
|
||||
link="link_6" />
|
||||
<axis
|
||||
xyz="0 0 1" />
|
||||
<limit
|
||||
lower="-2.234"
|
||||
upper="2.234"
|
||||
effort="10"
|
||||
velocity="3.14" />
|
||||
</joint>
|
||||
<link
|
||||
name="link_7">
|
||||
<inertial>
|
||||
<origin
|
||||
xyz="0.001094 -0.000077 -0.010119"
|
||||
rpy="0 0 0" />
|
||||
<mass
|
||||
value="0.107" />
|
||||
<inertia
|
||||
ixx="0.000044123"
|
||||
ixy="-0.000000064"
|
||||
ixz="0.0000003"
|
||||
iyy="0.000035078"
|
||||
iyz="-0.000000029"
|
||||
izz="0.000065445" />
|
||||
</inertial>
|
||||
<visual>
|
||||
<origin
|
||||
xyz="0 0 0"
|
||||
rpy="0 0 0" />
|
||||
<geometry>
|
||||
<mesh
|
||||
filename="meshes/link_7.STL" />
|
||||
</geometry>
|
||||
<material
|
||||
name="">
|
||||
<color
|
||||
rgba="1 1 1 1" />
|
||||
</material>
|
||||
</visual>
|
||||
<collision>
|
||||
<origin
|
||||
xyz="0 0 0"
|
||||
rpy="0 0 0" />
|
||||
<geometry>
|
||||
<mesh
|
||||
filename="meshes/link_7.STL" />
|
||||
</geometry>
|
||||
</collision>
|
||||
</link>
|
||||
<joint
|
||||
name="joint_7"
|
||||
type="revolute">
|
||||
<origin
|
||||
xyz="0 -0.144 0"
|
||||
rpy="1.5708 0 0" />
|
||||
<parent
|
||||
link="link_6" />
|
||||
<child
|
||||
link="link_7" />
|
||||
<axis
|
||||
xyz="0 0 1" />
|
||||
<limit
|
||||
lower="-6.28"
|
||||
upper="6.28"
|
||||
effort="10"
|
||||
velocity="3.14" />
|
||||
</joint>
|
||||
<!-- Scissor end-effector -->
|
||||
<link name="scissor_link">
|
||||
<inertial>
|
||||
<!-- Replace these values with CAD-derived mass properties -->
|
||||
<origin xyz="0 0 0" rpy="0 0 0" />
|
||||
<mass value="0.1" />
|
||||
<inertia
|
||||
ixx="0.0001"
|
||||
ixy="0"
|
||||
ixz="0"
|
||||
iyy="0.0001"
|
||||
iyz="0"
|
||||
izz="0.0001" />
|
||||
</inertial>
|
||||
|
||||
<visual>
|
||||
<origin xyz="0 0 0" rpy="0 0 0" />
|
||||
<geometry>
|
||||
<mesh
|
||||
filename="meshes/scissor.stl"
|
||||
scale="1 1 1" />
|
||||
</geometry>
|
||||
<material name="scissor_material">
|
||||
<color rgba="0.7 0.7 0.7 1" />
|
||||
</material>
|
||||
</visual>
|
||||
|
||||
<collision>
|
||||
<origin xyz="0 0 0" rpy="0 0 0" />
|
||||
<geometry>
|
||||
<mesh
|
||||
filename="meshes/scissor.stl"
|
||||
scale="1 1 1" />
|
||||
</geometry>
|
||||
</collision>
|
||||
</link>
|
||||
|
||||
<!-- Rigidly attach the scissor to the final wrist link -->
|
||||
<joint name="scissor_fixed_joint" type="fixed">
|
||||
<parent link="link_7" />
|
||||
<child link="scissor_link" />
|
||||
<origin xyz="0 0 0.165" rpy="0 0 0" />
|
||||
</joint>
|
||||
|
||||
|
||||
<link name="scissor_tcp"/>
|
||||
|
||||
<joint name="scissor_tcp_fixed" type="fixed">
|
||||
<parent link="scissor_link"/>
|
||||
<child link="scissor_tcp"/>
|
||||
<origin xyz="0 0 0" rpy="0 0 0"/>
|
||||
</joint>
|
||||
|
||||
<link name="camera_tcp"/>
|
||||
|
||||
<joint name="camera_tcp_fixed" type="fixed">
|
||||
<parent link="scissor_link"/>
|
||||
<child link="camera_tcp"/>
|
||||
<origin xyz="0.042 0 -0.0755" rpy="0 0 1.57"/>
|
||||
</joint>
|
||||
|
||||
|
||||
|
||||
</robot>
|
||||
@@ -0,0 +1,516 @@
|
||||
<?xml version="1.0" encoding="utf-8"?>
|
||||
<!-- This URDF was automatically created by SolidWorks to URDF Exporter! Originally created by Stephen Brawner (brawner@gmail.com)
|
||||
Commit Version: 1.6.0-1-g15f4949 Build Version: 1.6.7594.29634
|
||||
For more information, please see http://wiki.ros.org/sw_urdf_exporter -->
|
||||
<robot
|
||||
name="RM75-B">
|
||||
<link
|
||||
name="base_link">
|
||||
<inertial>
|
||||
<origin
|
||||
xyz="0.00049987 5.2709E-05 0.060019"
|
||||
rpy="0 0 0" />
|
||||
<mass
|
||||
value="1.862" />
|
||||
<inertia
|
||||
ixx="0.0017232"
|
||||
ixy="-3.1058E-06"
|
||||
ixz="-3.7924E-05"
|
||||
iyy="0.0017051"
|
||||
iyz="1.3691E-06"
|
||||
izz="0.00090158" />
|
||||
</inertial>
|
||||
<visual>
|
||||
<origin
|
||||
xyz="0 0 0"
|
||||
rpy="0 0 0" />
|
||||
<geometry>
|
||||
<mesh
|
||||
filename="meshes/base_link.STL" />
|
||||
</geometry>
|
||||
<material
|
||||
name="">
|
||||
<color
|
||||
rgba="1 1 1 1" />
|
||||
</material>
|
||||
</visual>
|
||||
<collision>
|
||||
<origin
|
||||
xyz="0 0 0"
|
||||
rpy="0 0 0" />
|
||||
<geometry>
|
||||
<mesh
|
||||
filename="meshes/base_link.STL" />
|
||||
</geometry>
|
||||
</collision>
|
||||
</link>
|
||||
<link
|
||||
name="link_1">
|
||||
<inertial>
|
||||
<origin
|
||||
xyz="0.000241 -0.013273 -0.00995"
|
||||
rpy="0 0 0" />
|
||||
<mass
|
||||
value="1.574" />
|
||||
<inertia
|
||||
ixx="0.002487573"
|
||||
ixy="0.000009663"
|
||||
ixz="-0.000007909"
|
||||
iyy="0.002321038"
|
||||
iyz="0.000179393"
|
||||
izz="0.001450554" />
|
||||
</inertial>
|
||||
<visual>
|
||||
<origin
|
||||
xyz="0 0 0"
|
||||
rpy="0 0 0" />
|
||||
<geometry>
|
||||
<mesh
|
||||
filename="meshes/link_1.STL" />
|
||||
</geometry>
|
||||
<material
|
||||
name="">
|
||||
<color
|
||||
rgba="1 1 1 1" />
|
||||
</material>
|
||||
</visual>
|
||||
<collision>
|
||||
<origin
|
||||
xyz="0 0 0"
|
||||
rpy="0 0 0" />
|
||||
<geometry>
|
||||
<mesh
|
||||
filename="meshes/link_1.STL" />
|
||||
</geometry>
|
||||
</collision>
|
||||
</link>
|
||||
<joint
|
||||
name="joint_1"
|
||||
type="revolute">
|
||||
<origin
|
||||
xyz="0 0 0.2405"
|
||||
rpy="0 0 0" />
|
||||
<parent
|
||||
link="base_link" />
|
||||
<child
|
||||
link="link_1" />
|
||||
<axis
|
||||
xyz="0 0 1" />
|
||||
<limit
|
||||
lower="-3.106"
|
||||
upper="3.106"
|
||||
effort="60"
|
||||
velocity="3.14" />
|
||||
</joint>
|
||||
<link
|
||||
name="link_2">
|
||||
<inertial>
|
||||
<origin
|
||||
xyz="-0.000357 -0.106789 0.005329"
|
||||
rpy="0 0 0" />
|
||||
<mass
|
||||
value="1.217" />
|
||||
<inertia
|
||||
ixx="0.003494121"
|
||||
ixy="0.000002921"
|
||||
ixz="-0.000005613"
|
||||
iyy="0.000892721"
|
||||
iyz="-0.000583884"
|
||||
izz="0.003444080" />
|
||||
</inertial>
|
||||
<visual>
|
||||
<origin
|
||||
xyz="0 0 0"
|
||||
rpy="0 0 0" />
|
||||
<geometry>
|
||||
<mesh
|
||||
filename="meshes/link_2.STL" />
|
||||
</geometry>
|
||||
<material
|
||||
name="">
|
||||
<color
|
||||
rgba="1 1 1 1" />
|
||||
</material>
|
||||
</visual>
|
||||
<collision>
|
||||
<origin
|
||||
xyz="0 0 0"
|
||||
rpy="0 0 0" />
|
||||
<geometry>
|
||||
<mesh
|
||||
filename="meshes/link_2.STL" />
|
||||
</geometry>
|
||||
</collision>
|
||||
</link>
|
||||
<joint
|
||||
name="joint_2"
|
||||
type="revolute">
|
||||
<origin
|
||||
xyz="0 0 0"
|
||||
rpy="-1.5708 0 0" />
|
||||
<parent
|
||||
link="link_1" />
|
||||
<child
|
||||
link="link_2" />
|
||||
<axis
|
||||
xyz="0 0 1" />
|
||||
<limit
|
||||
lower="-2.2689"
|
||||
upper="2.2689"
|
||||
effort="60"
|
||||
velocity="3.14" />
|
||||
</joint>
|
||||
<link
|
||||
name="link_3">
|
||||
<inertial>
|
||||
<origin
|
||||
xyz="0.000003 -0.01398 -0.011324"
|
||||
rpy="0 0 0" />
|
||||
<mass
|
||||
value="1.11" />
|
||||
<inertia
|
||||
ixx="0.001836663"
|
||||
ixy="0.000002259"
|
||||
ixz="-0.000004216"
|
||||
iyy="0.001498875"
|
||||
iyz="0.000037167"
|
||||
izz="0.001062545" />
|
||||
</inertial>
|
||||
<visual>
|
||||
<origin
|
||||
xyz="0 0 0"
|
||||
rpy="0 0 0" />
|
||||
<geometry>
|
||||
<mesh
|
||||
filename="meshes/link_3.STL" />
|
||||
</geometry>
|
||||
<material
|
||||
name="">
|
||||
<color
|
||||
rgba="1 1 1 1" />
|
||||
</material>
|
||||
</visual>
|
||||
<collision>
|
||||
<origin
|
||||
xyz="0 0 0"
|
||||
rpy="0 0 0" />
|
||||
<geometry>
|
||||
<mesh
|
||||
filename="meshes/link_3.STL" />
|
||||
</geometry>
|
||||
</collision>
|
||||
</link>
|
||||
<joint
|
||||
name="joint_3"
|
||||
type="revolute">
|
||||
<origin
|
||||
xyz="0 -0.256 0"
|
||||
rpy="1.5708 0 0" />
|
||||
<parent
|
||||
link="link_2" />
|
||||
<child
|
||||
link="link_3" />
|
||||
<axis
|
||||
xyz="0 0 1" />
|
||||
<limit
|
||||
lower="-3.106"
|
||||
upper="3.106"
|
||||
effort="30"
|
||||
velocity="3.14" />
|
||||
</joint>
|
||||
<link
|
||||
name="link_4">
|
||||
<inertial>
|
||||
<origin
|
||||
xyz="-0.000005 -0.084658 0.004747"
|
||||
rpy="0 0 0" />
|
||||
<mass
|
||||
value="0.685" />
|
||||
<inertia
|
||||
ixx="0.001282444"
|
||||
ixy="-0.000000551"
|
||||
ixz="-0.000000630"
|
||||
iyy="0.000373013"
|
||||
iyz="-0.000232084"
|
||||
izz="0.001256177" />
|
||||
</inertial>
|
||||
<visual>
|
||||
<origin
|
||||
xyz="0 0 0"
|
||||
rpy="0 0 0" />
|
||||
<geometry>
|
||||
<mesh
|
||||
filename="meshes/link_4.STL" />
|
||||
</geometry>
|
||||
<material
|
||||
name="">
|
||||
<color
|
||||
rgba="1 1 1 1" />
|
||||
</material>
|
||||
</visual>
|
||||
<collision>
|
||||
<origin
|
||||
xyz="0 0 0"
|
||||
rpy="0 0 0" />
|
||||
<geometry>
|
||||
<mesh
|
||||
filename="meshes/link_4.STL" />
|
||||
</geometry>
|
||||
</collision>
|
||||
</link>
|
||||
<joint
|
||||
name="joint_4"
|
||||
type="revolute">
|
||||
<origin
|
||||
xyz="0 0 0"
|
||||
rpy="-1.5708 0 0" />
|
||||
<parent
|
||||
link="link_3" />
|
||||
<child
|
||||
link="link_4" />
|
||||
<axis
|
||||
xyz="0 0 1" />
|
||||
<limit
|
||||
lower="-2.356"
|
||||
upper="2.356"
|
||||
effort="30"
|
||||
velocity="3.14" />
|
||||
</joint>
|
||||
<link
|
||||
name="link_5">
|
||||
<inertial>
|
||||
<origin
|
||||
xyz="0.000078 -0.012937 -0.008781"
|
||||
rpy="0 0 0" />
|
||||
<mass
|
||||
value="0.619" />
|
||||
<inertia
|
||||
ixx="0.000627336"
|
||||
ixy="0.000001636"
|
||||
ixz="-0.000001345"
|
||||
iyy="0.000542455"
|
||||
iyz="0.000034970"
|
||||
izz="0.000370291" />
|
||||
</inertial>
|
||||
<visual>
|
||||
<origin
|
||||
xyz="0 0 0"
|
||||
rpy="0 0 0" />
|
||||
<geometry>
|
||||
<mesh
|
||||
filename="meshes/link_5.STL" />
|
||||
</geometry>
|
||||
<material
|
||||
name="">
|
||||
<color
|
||||
rgba="1 1 1 1" />
|
||||
</material>
|
||||
</visual>
|
||||
<collision>
|
||||
<origin
|
||||
xyz="0 0 0"
|
||||
rpy="0 0 0" />
|
||||
<geometry>
|
||||
<mesh
|
||||
filename="meshes/link_5.STL" />
|
||||
</geometry>
|
||||
</collision>
|
||||
</link>
|
||||
<joint
|
||||
name="joint_5"
|
||||
type="revolute">
|
||||
<origin
|
||||
xyz="0 -0.21 0"
|
||||
rpy="1.5708 0 0" />
|
||||
<parent
|
||||
link="link_4" />
|
||||
<child
|
||||
link="link_5" />
|
||||
<axis
|
||||
xyz="0 0 1" />
|
||||
<limit
|
||||
lower="-3.106"
|
||||
upper="3.106"
|
||||
effort="10"
|
||||
velocity="3.14" />
|
||||
</joint>
|
||||
<link
|
||||
name="link_6">
|
||||
<inertial>
|
||||
<origin
|
||||
xyz="-0.000014 -0.078524 0.002819"
|
||||
rpy="0 0 0" />
|
||||
<mass
|
||||
value="0.602" />
|
||||
<inertia
|
||||
ixx="0.000780774"
|
||||
ixy="-0.000000121"
|
||||
ixz="-0.000000469"
|
||||
iyy="0.000289973"
|
||||
iyz="-0.000120513"
|
||||
izz="0.000763955" />
|
||||
</inertial>
|
||||
<visual>
|
||||
<origin
|
||||
xyz="0 0 0"
|
||||
rpy="0 0 0" />
|
||||
<geometry>
|
||||
<mesh
|
||||
filename="meshes/link_6.STL" />
|
||||
</geometry>
|
||||
<material
|
||||
name="">
|
||||
<color
|
||||
rgba="1 1 1 1" />
|
||||
</material>
|
||||
</visual>
|
||||
<collision>
|
||||
<origin
|
||||
xyz="0 0 0"
|
||||
rpy="0 0 0" />
|
||||
<geometry>
|
||||
<mesh
|
||||
filename="meshes/link_6.STL" />
|
||||
</geometry>
|
||||
</collision>
|
||||
</link>
|
||||
<joint
|
||||
name="joint_6"
|
||||
type="revolute">
|
||||
<origin
|
||||
xyz="0 0 0"
|
||||
rpy="-1.5708 0 0" />
|
||||
<parent
|
||||
link="link_5" />
|
||||
<child
|
||||
link="link_6" />
|
||||
<axis
|
||||
xyz="0 0 1" />
|
||||
<limit
|
||||
lower="-2.234"
|
||||
upper="2.234"
|
||||
effort="10"
|
||||
velocity="3.14" />
|
||||
</joint>
|
||||
<link
|
||||
name="link_7">
|
||||
<inertial>
|
||||
<origin
|
||||
xyz="0.001094 -0.000077 -0.010119"
|
||||
rpy="0 0 0" />
|
||||
<mass
|
||||
value="0.107" />
|
||||
<inertia
|
||||
ixx="0.000044123"
|
||||
ixy="-0.000000064"
|
||||
ixz="0.0000003"
|
||||
iyy="0.000035078"
|
||||
iyz="-0.000000029"
|
||||
izz="0.000065445" />
|
||||
</inertial>
|
||||
<visual>
|
||||
<origin
|
||||
xyz="0 0 0"
|
||||
rpy="0 0 0" />
|
||||
<geometry>
|
||||
<mesh
|
||||
filename="meshes/link_7.STL" />
|
||||
</geometry>
|
||||
<material
|
||||
name="">
|
||||
<color
|
||||
rgba="1 1 1 1" />
|
||||
</material>
|
||||
</visual>
|
||||
<collision>
|
||||
<origin
|
||||
xyz="0 0 0"
|
||||
rpy="0 0 0" />
|
||||
<geometry>
|
||||
<mesh
|
||||
filename="meshes/link_7.STL" />
|
||||
</geometry>
|
||||
</collision>
|
||||
</link>
|
||||
<joint
|
||||
name="joint_7"
|
||||
type="revolute">
|
||||
<origin
|
||||
xyz="0 -0.144 0"
|
||||
rpy="1.5708 0 0" />
|
||||
<parent
|
||||
link="link_6" />
|
||||
<child
|
||||
link="link_7" />
|
||||
<axis
|
||||
xyz="0 0 1" />
|
||||
<limit
|
||||
lower="-6.28"
|
||||
upper="6.28"
|
||||
effort="10"
|
||||
velocity="3.14" />
|
||||
</joint>
|
||||
<!-- Scissor end-effector -->
|
||||
<link name="scissor_link">
|
||||
<inertial>
|
||||
<!-- Replace these values with CAD-derived mass properties -->
|
||||
<origin xyz="0 0 0" rpy="0 0 0" />
|
||||
<mass value="0.1" />
|
||||
<inertia
|
||||
ixx="0.0001"
|
||||
ixy="0"
|
||||
ixz="0"
|
||||
iyy="0.0001"
|
||||
iyz="0"
|
||||
izz="0.0001" />
|
||||
</inertial>
|
||||
|
||||
<visual>
|
||||
<origin xyz="0 0 0" rpy="0 0 0" />
|
||||
<geometry>
|
||||
<mesh
|
||||
filename="meshes/mini_scissor.stl"
|
||||
scale="1 1 1" />
|
||||
</geometry>
|
||||
<material name="scissor_material">
|
||||
<color rgba="0.7 0.7 0.7 1" />
|
||||
</material>
|
||||
</visual>
|
||||
|
||||
<collision>
|
||||
<origin xyz="0 0 0" rpy="0 0 0" />
|
||||
<geometry>
|
||||
<mesh
|
||||
filename="meshes/mini_scissor.stl"
|
||||
scale="1 1 1" />
|
||||
</geometry>
|
||||
</collision>
|
||||
</link>
|
||||
|
||||
<!-- Rigidly attach the scissor to the final wrist link -->
|
||||
<joint name="scissor_fixed_joint" type="fixed">
|
||||
<parent link="link_7" />
|
||||
<child link="scissor_link" />
|
||||
<origin xyz="0 0 0.165" rpy="0 0 0" />
|
||||
</joint>
|
||||
|
||||
|
||||
<link name="scissor_tcp"/>
|
||||
|
||||
<joint name="scissor_tcp_fixed" type="fixed">
|
||||
<parent link="scissor_link"/>
|
||||
<child link="scissor_tcp"/>
|
||||
<origin xyz="0 0 0" rpy="0 0 0"/>
|
||||
</joint>
|
||||
|
||||
<link name="camera_tcp"/>
|
||||
|
||||
<joint name="camera_tcp_fixed" type="fixed">
|
||||
<parent link="scissor_link"/>
|
||||
<child link="camera_tcp"/>
|
||||
<origin xyz="0.08 0 -0.135" rpy="0 0 1.57"/>
|
||||
</joint>
|
||||
|
||||
|
||||
|
||||
</robot>
|
||||
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Reference in New Issue
Block a user