首页 /研究 /PID control for global finite-time regulation of robotic manipulators
MANIPULATION

PID control for global finite-time regulation of robotic manipulators

Yuxin Su, Chunhong Zheng

发表年份
2016
引用次数
27

摘要

This paper addresses the global finite-time regulation problem of robotic manipulators. A simple nonlinear proportional-integral-derivative (PID) control is proposed by adding a nonlinear proportional and derivative term to the commonly used PID controller. Lyapunov's stability theory and geometric homogeneity technique are employed to prove global finite-time stability. Advantages of the proposed control include the absence of modelling information in the control law formulation and the global finite-time stability featuring fast transient and high-precision positioning. Explicit conditions on the controller parameters to ensure global finite-time regulation stability are obtained. Simulations are presented to demonstrate the effectiveness and the improved performances of the proposed approach.

关键词

Control theory (sociology)PID controllerNonlinear systemStability (learning theory)Controller (irrigation)Control engineeringLyapunov functionHomogeneity (statistics)Computer scienceEngineering

相关论文

查看 MANIPULATION 分类全部论文