计算机科学
步态
运动控制
机器人
运动(物理)
CpG站点
机器人控制
物理医学与康复
移动机器人
人工智能
医学
生物
生物化学
基因
基因表达
DNA甲基化
作者
R. Chu,Yu Miao,Yingzi Tan
标识
DOI:10.1145/3702468.3702472
摘要
To address the limitations and instability against disturbances of the walking gait of existing bipedal robots based on the inverted pendulum model, this paper proposes a new control method based on the Central Pattern Generator (CPG) model. By incorporating Hopf oscillators and Kuramoto terms into the original inverted pendulum model, and by adjusting parameters, this method enables the controller to produce stable and gait-periodic oscillations that match the robot's stride, thereby making the robot's center of gravity more stable and enhancing its disturbance resistance during walking. This study also connects the improved controller with the robot's joint motors and adjusts the robot's leg-lifting height and foot trajectory using Bezier curve interpolation, based on the Zero Moment Point (ZMP) gait generation method, to plan a complete robot gait. Finally, through simulations and experiments of the bipedal humanoid robot walking continuously and under sinusoidal disturbances, it was found that the new model can maintain a smaller fluctuation range of the center of gravity during walking, stabilize more quickly against external disturbances, and produce less noise when disturbed. This verifies the feasibility and effectiveness of the proposed control strategy.
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