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Path Planning and Optimization of Humanoid Manipulator in Cartesian Space

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【作者】 李世其; 李肖; 韩可; 熊友军; 谢铮; 陈金亮;

【Author】 LI Shiqi;LI Xiao;HAN Ke;XIONG Youjun;XIE Zheng;CHEN Jinliang;School of Mechanical Science and Engineering, Huazhong University of Science and Technology;Ubtech Robotics Co., Ltd.;

【通讯作者】 李肖;

【机构】 School of Mechanical Science and Engineering, Huazhong University of Science and Technology; Ubtech Robotics Co., Ltd.;

【摘要】 To solve the problems of low efficiency and multi-solvability of humanoid manipulator Cartesian space path planning in physical human-robot interaction,an improved bi-directional rapidly-exploring random tree algorithm based on greedy growth strategy in 3D space is proposed.The workspace of manipulator established based on Monte Carlo method is used as the sampling space of the rapidly-exploring random tree,and the opposite expanding greedy growth strategy is added in the random tree expansion process to improve the path planning efficiency.Then the generated path is reversely optimized to shorten the length of the planned path,and the optimized path is interpolated and pose searched in Cartesian space to form a collision-free optimized path suitable for humanoid manipulator motion.Finally,the validity and reliability of the algorithm are verified in an intelligent elderly care service scenario based on Walker2,a large humanoid service robot.

【Abstract】 To solve the problems of low efficiency and multi-solvability of humanoid manipulator Cartesian space path planning in physical human-robot interaction,an improved bi-directional rapidly-exploring random tree algorithm based on greedy growth strategy in 3D space is proposed.The workspace of manipulator established based on Monte Carlo method is used as the sampling space of the rapidly-exploring random tree,and the opposite expanding greedy growth strategy is added in the random tree expansion process to improve the path planning efficiency.Then the generated path is reversely optimized to shorten the length of the planned path,and the optimized path is interpolated and pose searched in Cartesian space to form a collision-free optimized path suitable for humanoid manipulator motion.Finally,the validity and reliability of the algorithm are verified in an intelligent elderly care service scenario based on Walker2,a large humanoid service robot.

【基金】 the Key-Area Research and Development Program of Guangdong Province,China(No. 2019B010154003)
  • 【文献出处】 Journal of Shanghai Jiao Tong University(Science) ,上海交通大学学报(英文版) , 编辑部邮箱 ,2022年05期
  • 【分类号】TP241
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