欠驱动
倒立摆
控制理论(社会学)
两足动物
机器人
计算机科学
双摆
轨道(动力学)
非线性系统
物理
工程类
人工智能
控制(管理)
地质学
航空航天工程
古生物学
量子力学
作者
Xiaobin Xiong,Aaron D. Ames
出处
期刊:
日期:2019-11-01
卷期号:: 4644-4651
被引量:27
标识
DOI:10.1109/iros40897.2019.8968162
摘要
A Hybrid passive Linear Inverted Pendulum (H-LIP) model is proposed for characterizing, stabilizing and composing periodic orbits for 3D underactuated bipedal walking. Specifically, Period-l (P1) and Period -2 (P2) orbits are geometrically characterized in the state space of the H-LIP. Stepping controllers are designed for global stabilization of the orbits. Valid ranges of the gains and their optimality are derived. The optimal stepping controller is used to create and stabilize the walking of bipedal robots. An actuated Spring-loaded Inverted Pendulum (aSLIP) model and the underactuated robot Cassie are used for illustration. Both the aSLIP walking with PI or P2 orbits and the Cassie walking with all 3D compositions of the PI and P2 orbits can be smoothly generated and stabilized from a stepping-in-place motion. This approach provides a perspective and a methodology towards continuous gait generation and stabilization for 3D underactuated walking robots.
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