零力矩点
仿人机器人
机器人
计算机科学
控制理论(社会学)
力矩(物理)
平衡(能力)
理论(学习稳定性)
控制(管理)
控制工程
模拟
人工智能
工程类
物理医学与康复
经典力学
机器学习
物理
医学
作者
Hayder F. N. Al-Shuka,Burkhard Corves,Wen-Hong Zhu,Bram Vanderborght
出处
期刊:Robotica
[Cambridge University Press]
日期:2015-02-24
卷期号:34 (11): 2440-2466
被引量:47
标识
DOI:10.1017/s0263574715000107
摘要
SUMMARY Researchers dream of developing autonomous humanoid robots which behave/walk like a human being. Biped robots, although complex, have the greatest potential for use in human-centred environments such as the home or office. Studying biped robots is also important for understanding human locomotion and improving control strategies for prosthetic and orthotic limbs. Control systems of humans walking in cluttered environments are complex, however, and may involve multiple local controllers and commands from the cerebellum. Although biped robots have been of interest over the last four decades, no unified stability/balance criterion adopted for stabilization of miscellaneous walking/running modes of biped robots has so far been available. The literature is scattered and it is difficult to construct a unified background for the balance strategies of biped motion. The zero-moment point (ZMP) criterion, however, is a conservative indicator of stabilized motion for a class of biped robots. Therefore, we offer a systematic presentation of multi-level balance controllers for stabilization and balance recovery of ZMP-based humanoid robots.
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