Tuning of Fuzzy Controllers

  • Qing-chun Li
  • De-yao Shen
Conference paper
Part of the Advances in Intelligent and Soft Computing book series (AINSC, volume 62)

Abstract

Various kinds of fuzzy logic controllers (FLC) have been well investigated and widely used nowadays in industry, although there are rather few literatures being useful investigated the tuning of fuzzy controllers [1-4], the tuning strategy of fuzzy controllers has not been well established. In this paper the 5 parameters of fuzzy logic controllers are full investigated, and defined: (1) the value L for inputs and outputs of FLC is the absolute value of the reference signalr(kt). (2) the output scaling coefficientsG U of the FLC is β times of the max of among the parametersK P , K I , K D of the conventional PID controllers. (3) Based on the above two conditions, we established the relationship between the inputs scaling coefficients G P , G I , G D of the FLC and the parametersK P , K I , K D of the conventional PID controllers. Also we proposed the convertibility between the parameters of the FLC and the conventional PID controllers. The simulation research results show that the control performance of the FLC is close to that of the conventional PID controllers.

Keywords

Fuzzy PID controller fuzzy control parameters tuning characteristic analysis conventional PID controller 

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References

  1. 1.
    Xu, J.-X., Liu, C., Hang, C.-C.: Modified Tuning of a Fuzzy Logic Controller. Engng. Applic. Artif. Lntell. 9(1), 65–74 (1996)CrossRefGoogle Scholar
  2. 2.
    Xu, J.-X., Liu, C., Hang, C.-C.: Tuning of fuzzy PI controllers based on gain/phase margin specifications and ITAE index. ISA Transactions 35, 79–91 (1996)CrossRefGoogle Scholar
  3. 3.
    Xu, J.-X., Hang, C.-C., Liu, C.: Parallel structure and tuning of a fuzzy PID controller. Automatica 36, 637–684 (2000)CrossRefMathSciNetGoogle Scholar
  4. 4.
    Yinsong, W., Jizhen, L.: A PID-type fuzzy controller and its parameters tuning method. In: Proceedings of the 5th World Congress on intelligent Control and Automation, Hangzhou, P.R. China, June 15-19, pp. 2589–2592 (2004)Google Scholar
  5. 5.
    Ying, H., Siler, W., Buckley, J.J.: Fuzzy control theory: a nonlinear case. Automatica 26, 513–520 (1990)MATHCrossRefMathSciNetGoogle Scholar
  6. 6.
    Ying, H.: Practical design of nonlinear fuzzy controller with stability analysis for regulating processes with unknown mathematical models. Automatica 30, 1185–1195 (1994)MATHCrossRefGoogle Scholar

Copyright information

© Springer-Verlag Berlin Heidelberg 2009

Authors and Affiliations

  • Qing-chun Li
    • 1
  • De-yao Shen
    • 1
  1. 1.School of Information Science and EngineeringCentral South UniversityChangshaChina

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