首页 /研究 /Neuro-Based Position and Force Hybrid Control of Six-Legged Walking Robot
MANIPULATION

Neuro-Based Position and Force Hybrid Control of Six-Legged Walking Robot

Qingjiu Huang, Kenzo NONAMI

发表年份
2002
引用次数
15

摘要

We propose a six-legged walking robot having two manipulators which offers added stability, mobility, and functionality. We studied neuro-based position and force hybrid motion control for walking on irregular terrain. Comparison with conventional position and force hybrid control demonstrates the high efficiency of the proposed neuro-based position and force hybrid control. The neuro-based position and force hybrid control includes six-axis force sensors in each leg, which provide control vertically, i.e., in the direction of gravity, and in the walking direction. This platform has proven to be very useful on irregular terrain including obstacles of random height and random position. Consequently, autonomous stable walking in an unknown environment has been realized through experiments.

关键词

Position (finance)TerrainRobotControl theory (sociology)Computer scienceMotion controlSimulationControl (management)Artificial intelligence

相关论文

查看 MANIPULATION 分类全部论文