首页 /研究 /Approximate dynamic programming in robust tracking control of wheeled mobile robot
LEARNING

Approximate dynamic programming in robust tracking control of wheeled mobile robot

Zenon Hendzel, Marcin Szuster

发表年份
2020
引用次数
2
访问权限
开放获取

摘要

In this work, a novel approach to designing an on-line tracking controller for a nonholonomic wheeled mobile robot (WMR) is presented. The controller consists of nonlinear neural feedback compensator, PD control law and supervisory element, which assure stability of the system. Neural network for feedback compensation is learned through approximate dynamic programming (ADP). To obtain stability in the learning phase and robustness in face of disturbances, an additional control signal derived from Lyapunov stability theorem based on the variable structure systems theory is provided. Verification of the proposed control algorithm was realized on a wheeled mobile robot Pioneer–2DX, and confirmed the assumed behavior of the control system.

关键词

Mobile robotComputer scienceTracking (education)Dynamic programmingControl (management)Control theory (sociology)Artificial intelligenceRobotPsychologyAlgorithm

相关论文

查看 LEARNING 分类全部论文