Dynamic State Feedback Controller Synthesis for Fuzzy Models

퍼지 모델을 위한 동적 상태 피드백 제어기 설계

  • Chang, Wook (Dept. of Electrical & Computer Eng., Yonsei Univ.) ;
  • Joo, Young-Hoon (Dept. of Control & Instrumentation Eng., Kunsan Univ.) ;
  • Park, Jin-Bae (Dept. of Electrical & Computer Eng., Yonsei Univ.)
  • 장욱 (연세대학교 전기 컴퓨터공학과) ;
  • 주영훈 (군산대 제어계측공학과) ;
  • 박진배 (연세대학교 전기 컴퓨터공학과)
  • Published : 1999.07.19

Abstract

This paper addresses the analysis and design of fuzzy control systems for a class of complex single input single output nonlinear systems. Firstly, the nonlinear system is represented by well-known Takagai-Sugeno (TS) fuzzy model and the global controller is constructed by compensating each linear model in the rule of TS fuzzy model. The design of conventional TS fuzzy-model-based controller usually is composed of two processes. One is to determine static state feedback gain of each local model and the other is to validate the stability of the designed fuzzy controller. In this paper, we propose an alternative of the design of TS fuzzy-model-based controller. The design scheme is based on the extension of conventional optimal control theory to the design of TS fuzzy-model-based controller. By using the proposed method the design and stability analysis of the TS fuzzy model-based controller is reduced to the problem of finding the solution of a set of algebraic Riccati equations. And we use the recently developed interior point method to find the solution of AREs, where AREs are recast as the LMI formulation. One simulation example is given to show the effectiveness and feasibility of the proposed fuzzy controller design method.

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