首页 /研究 /A Control Framework for Anthropomorphic Biped Walking Based on Stabilizing Feedforward Trajectories
LOCOMOTION

A Control Framework for Anthropomorphic Biped Walking Based on Stabilizing Feedforward Trajectories

Siavash Rezazadeh, Robert D. Gregg

发表年份
2016
引用次数
2

摘要

Although dynamic walking methods have had notable successes in control of bipedal robots in the recent years, still most of the humanoid robots rely on quasi-static Zero Moment Point controllers. This work is an attempt to design a highly stable controller for dynamic walking of a human-like model which can be used both for control of humanoid robots and prosthetic legs. The method is based on using time-based trajectories that can induce a highly stable limit cycle to the bipedal robot. The time-based nature of the controller motivates its use to entrain a model of an amputee walking, which can potentially lead to a better coordination of the interaction between the prosthesis and the human. The simulations demonstrate the stability of the controller and its robustness against external perturbations.

关键词

Humanoid robotZero moment pointControl theory (sociology)Robustness (evolution)RobotComputer scienceFeed forwardController (irrigation)Control engineeringRobust control

相关论文

查看 LOCOMOTION 分类全部论文