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Global Asymptotic Stability of PID Controller for Robotic Manipulators

Yuxin Su, Chunhong Zheng, Peter C. Mullerz

Year
2007
Citations
4

Abstract

In this paper, we provide an answer to the longstanding question of designing global asymptotically stable proportional-integral-derivative (PID) regulators for uncertain robotic manipulators. Our main contribution is to establish the global asymptotic stability of the controlled system with the commonly-used PID controller by using Lyapunov's direct method and LaSalle's invariance principle. Furthermore, an improved nonlinear proportional-integral plus derivative (NPI-D) controller is proposed to fast the transient. Simulations performed on a planar two degrees-of-freedom (DOF) robot manipulator demonstrate the improved performance of the proposed NPI-D controller over the commonly-used PID controller.

Keywords

PID controllerControl theory (sociology)Exponential stabilityController (irrigation)Nonlinear systemLyapunov functionStability (learning theory)RobotMathematicsControl engineering

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