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Finite-Frequency Fuzzy Output Feedback Controller Design for Roesser-Type Two-Dimensional Nonlinear Systems

  • Meng Wang
  • , Gang Feng*
  • , Jianbin Qiu
  • *Corresponding author for this work
  • East China University of Science and Technology
  • City University of Hong Kong
  • State Key Laboratory of Robotics and Systems

Research output: Contribution to journalArticlepeer-review

Abstract

This article studies the problem of finite-frequency static output feedback (SOF) \mathscr H{\infty } controller design for discrete-Time Roesser-Type two-dimensional (2-D) nonlinear systems based on Takagi-Sugeno (T-S) fuzzy models. The 2-D Roesser nonlinear systems are described by T-S fuzzy models with parameter uncertainties. The objective is to design a SOF controller guaranteeing the asymptotic stability of the resulting closed-loop system with finite frequency \mathscr H{\infty } performance. Via a system state-input augmentation technique, the closed-loop system is formulated in a descriptor form. Then, based on fuzzy Lyapunov functions and some elegant convexification procedures, the SOF controller design approach is proposed. It is shown that the controller gains can be obtained by solving a set of linear matrix inequalities. Finally, simulation studies are given to demonstrate the effectiveness of the proposed method.

Original languageEnglish
Article number8957481
Pages (from-to)861-873
Number of pages13
JournalIEEE Transactions on Fuzzy Systems
Volume29
Issue number4
DOIs
StatePublished - Apr 2021

Keywords

  • Finite-frequency performance
  • Takagi-Sugeno (T-S) fuzzy models
  • static output feedback (SOF) control
  • two-dimensional Roesser nonlinear systems

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