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Design of Takagi-Sugeno Fuzzy Region Controller Based on Rule Reduction, Robust Control, and Switching Concept

Chein-Chung Sun, Sheng‐Ming Wu, Hung‐Yuan Chung, Wen‐Jer Chang

Year
2006
Citations
3

Abstract

Abstract This paper presents a new structure of Takagi-Sugeno (T-S) fuzzy controllers, which is called T-S fuzzy region controller or TSFRC for short. The fuzzy region concept is used to partition the plant rules into several fuzzy regions so that only one region is fired at the instant of each input vector being coming. Because each fuzzy region contains several plant rules, the fuzzy region can be regarded as a polytopic uncertain model. Therefore, robust control techniques would be essential for designing the feedback gains of each fuzzy region. To improve the speed of response, the decay rate constraint is imposed when deriving the stability conditions with Lyapunov stability criterion. To design TSFRC with the linear matrix inequality (LMI) solver, all stability conditions are represented in terms of LMIs. Finally, a two-link robot system is used to prove the feasibility and validity of the proposed method.

Keywords

Control theory (sociology)Fuzzy logicFuzzy control systemMathematicsFuzzy associative matrixFuzzy ruleController (irrigation)Constraint (computer-aided design)Fuzzy numberPartition (number theory)

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