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A Chattering Free Discrete-Time Global Sliding Mode Controller for Optoelectronic Tracking System

Yan Ren, Zhenghua Liu, Xiaodong Liu and Yu Zhang

Mathematical Problems in Engineering, 2013, vol. 2013, 1-8

Abstract:

Aiming at the uncertainties including parameter variations and external disturbances in optoelectronic tracking system, a discrete-time global sliding mode controller (DGSMC) is proposed. By the design of nonlinear switching function, the initial state of control system is set on the switching surface. An adaptive discrete-time reaching law is introduced to suppress the high-frequency chattering at control input, and a linear extrapolation method is employed to estimate the unknown uncertainties and commands. The global reachability for sliding mode and the chattering-free property are proven by means of mathematical derivation. Numerical simulation presents that the proposed DGSMC scheme not only ensures strong robustness against system uncertainties and small tracking error, but also suppresses the high-frequency chattering at control input effectively, compared with the SMC scheme using conventional discrete-time reaching law.

Date: 2013
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Persistent link: https://EconPapers.repec.org/RePEc:hin:jnlmpe:951492

DOI: 10.1155/2013/951492

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