Home /Research /Nonlinear PID control with sliding modes for tracking of robot manipulators
MANIPULATION

Nonlinear PID control with sliding modes for tracking of robot manipulators

Vicente Parra‐Vega, S. Arimoto

Year
2002
Citations
16

Abstract

It is well-known that PD controller plus gravity compensation yields the global asymptotic stability for regulation tasks for robot manipulators. The impressive success of these controllers in real-time tasks lie in the fact that they do neither compensate inertial nor coriolis forces, so neither inertial nor coriolis matrices are needed to implement the controller. However these linear state feedback controllers with gravity compensation cannot render asymptotic stability for tracking tasks. In this paper, a simple decentralized continuous nonlinear PID controller that yields local exponential stability for tracking tasks is proposed.

Keywords

Control theory (sociology)Exponential stabilityPID controllerNonlinear systemCompensation (psychology)Controller (irrigation)Tracking (education)RobotInertial frame of referenceComputer science

Related papers

Browse all MANIPULATION papers