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Dynamic switching based fuzzy control strategy for a class of distributed parameter system

Yao-Qing Ren, Xiao-Gang Duan*, Han-Xiong Li, C. L. Philip Chen

*Corresponding author for this work

    Research output: Journal Publications and ReviewsRGC 21 - Publication in refereed journalpeer-review

    Abstract

    In this work, a dynamic switching based fuzzy controller combined with spectral method is proposed to control a class of nonlinear distributed parameter systems (DPSs). Spectral method can transform infinite-dimensional DPS into finite ordinary differential equations (ODEs). A dynamic switching based fuzzy controller is constructed to track reference values for the multi-inputs multi-outputs (MIMO) ODEs. Only a traditional fuzzy logic system (FLS) and a rule base are used in the controller, and membership functions (MFs) for different ODEs are adjusted by scaling factors. Analytical models of the dynamic switching based fuzzy controller are deduced to design the scaling factors and analyze stability of the control system. In order to obtain a good control performance, particle swarm optimization (PSO) is adopted to design the scaling factors. Moreover, stability of fuzzy control system is analyzed by using the analytical models, definition of the stability and Lyapunov stability theory. Finally, a nonlinear rod catalytic reaction process is used as an illustrated example for demonstration. The simulation results show that performance of proposed dynamic switching based fuzzy control strategy is better than a multi-variable fuzzy logic controller. © 2013 Elsevier Ltd.
    Original languageEnglish
    Pages (from-to)88-97
    JournalJournal of Process Control
    Volume24
    Issue number3
    Online published1 Feb 2014
    DOIs
    Publication statusPublished - Mar 2014

    Research Keywords

    • Distributed parameter system
    • Dynamic switching
    • Fuzzy logic controller
    • Particle swarm optimization
    • Spectral method

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