首页 /研究 /Understanding of Human Assembly Tasks for Robot Execution. Generation of Optimal Trajectories Based on Transitions of Contact Relations
OTHER

Understanding of Human Assembly Tasks for Robot Execution. Generation of Optimal Trajectories Based on Transitions of Contact Relations

Jun Takamatsu, Koichi Ogawara, Hiroshi Kimura, Katsushi Ikeuchi

发表年份
2004
引用次数
6
访问权限
开放获取

摘要

The planning-from-observation paradigm is widely noticed as a novel robot-programming technique. It consists of two parts: (1) recognition of a human demonstration from observation as symbolic representation, i.e., a sequence of movement primitives and (2) execution of the same task. Symbolic representation enables a robot to achieve the same task even in a different environment. We already proposed a method to build a symbolic representation for an assembly task. However, for a robot to execute the task, it is necessary to adjust parameters of each movement primitive to generate appropriate trajectories of objects, especially a path which maintains one of any contact states. Many researchers have proposed methods to calculate such a path using a non-linear optimization method, for example, the potential field method, the probabilistic method, and so on. Although these methods are very powerful as calculation tools on a computer, their solutions are not optimal. We propose a novel method to calculate such an optimal path using a linear solution.

关键词

Task (project management)Representation (politics)Computer scienceRobotPath (computing)Programming by demonstrationMotion planningProbabilistic logicField (mathematics)Artificial intelligence

相关论文

查看 OTHER 分类全部论文