简单(哲学)
平衡(能力)
计算机科学
步行机器人
路径(计算)
工作(物理)
控制理论(社会学)
控制(管理)
模拟
人工智能
工程类
机器人
物理医学与康复
机械工程
哲学
认识论
程序设计语言
医学
作者
Marc H. Raibert,H. Benjamín Brown,Michael Chepponis
标识
DOI:10.1177/027836498400300207
摘要
In order to explore the balance in legged locomotion, we are studying systems that hop and run on one springy leg. Pre vious work has shown that relatively simple algorithms can achieve balance on one leg for the special case of a system that is constrained mechanically to operate in a plane ( Rai bert, in press; Raibert and Brown, in press). Here we general ize the approach to a three-dimensional ( 3D) one-legged machine that runs and balances on an open floor without physical support. We decompose control of the machine into three separate parts: one part that controls forward running velocity, one part that controls attitude of the body, and a third part that controls hopping height. Experiments with a physical 3D one-legged hopping machine showed that this control scheme, while simple to implement, is powerful enough to permit hopping in place, running at a desired rate, and travel along a simple path. These algorithms that control locomotion in 3D are direct generalizations of those in 2D, with surprisingly little additional complication.
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