机器人
机器人运动
倒立摆
解耦(概率)
步行机器人
控制理论(社会学)
零力矩点
机器人控制
计算机科学
运动控制
控制工程
模拟
工程类
移动机器人
控制(管理)
人工智能
仿人机器人
量子力学
物理
非线性系统
作者
Ruchao Wang,Zhiguo Lü,Yinhe Xiao,Yiheng Zhao,Qijia Jiang,Xinhao Shi
标识
DOI:10.1109/lra.2024.3350997
摘要
This article mainly introduces a dynamically stabilized and balanced point-footed bipedal robot, which we named MPLBR (Multi-locomotion Parallel-Legged Bipedal Robot). The robot structure is designed with a symmetric architecture, including six motors and a five-link double crank mechanism for extending the legs. Based on the inverted pendulum model, a robot control process framework is proposed using the virtual model control (VMC) algorithm and the decoupling balance control algorithm, combined with robot gait planning and state detection, to achieve stable walking and hopping control of the robot. Through simulation experiments and physical prototype experiments to verify the algorithm, the robot can achieve stable walking control and bounce motion modes.
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