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A sliding-mode-like design for model-free tracking of nonholonomic mobile robots

Hui Chen, Da Yan, Hua Chen, Fang Yang

Year
2016
Citations
3

Abstract

This paper considers the problem of designing a high-gain sliding-mode-like feedback control law for the model-free tracking of nonholonomic mobile robots. The control approach developed in this work does not need any a-priori knowledge about the model of the robots. A model-free, self-support control algorithm is proposed such that the tracking error can be driven into a pre-specified neighborhood of zero just by using incomplete informations of the moving objects to be tracked. Global stability of the corresponding closed-loop system of tracking error is proved by the Lyapunov stability theory. Finally, the simulation results demonstrate the effectiveness of the proposed controller design method.

Keywords

Mobile robotNonholonomic systemComputer scienceTracking (education)Mode (computer interface)RobotControl theory (sociology)Computer visionArtificial intelligenceHuman–computer interaction

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