Stability analysis of the zero moment point–center of pressure algorithm for biped robots in unstructured environments
Abstract
Abstract The motion stability control of biped robots in unstructured environments is a prominent research hotspot in the field of robot control. The biped robot model features variable topology, strong nonlinearity, and multi-degree-of-freedom coupling, allowing for strong environmental interaction. The unstructured road environment imposes more significant requirements on the robot’s gait stability, joint coordination, and adaptability to its environment. In this study, a stability analysis of the motion of robots in unstructured environments was carried out using a disturbance balance control strategy and an application based on Zero Moment Point (ZMP)-Center of Pressure (CoP) testing for feedback control. The approach included a control strategy based on compensating for ankle joint trajectory and was tested using the Webots simulation platform and a real experimental platform. Multi-scene experiments involving NAO robots on stairs and in unstructured sandy environments were conducted to compare and analyze the gait stability and environmental adaptability of NAO robots in unstructured environments.
Article Details
Authors (3)
Chengguang Zhang
Jixiang Li
He Zhang