Finite-Time H-infinity Asynchronous Control for Nonlinear Markov Jump Distributed Parameter Systems via Quantized Fuzzy Output-Feedback Approach

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79
Citations

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86

초록

This article focuses on the asynchronous output-feedback control design for a class of nonlinear Markov jump distributed parameter systems based on a hidden Markov model. Initially, the considered systems are represented by a Takagi-Sugeno fuzzy model via a sector nonlinearity approach. Furthermore, asynchronous quantizers are introduced to save the limited communication resource in engineering applications. Then, based on the Lyapunov direct method and some inequality techniques, a series of novel stability criteria, which guarantee the finite-time boundedness and H-infinity disturbance attenuation performance of the target plants, is established in the form of spatial differential linear matrix inequalities. Finally, a simulation study is provided to verify the viability of the developed approach.

키워드

Asynchronous output-feedback controldistributed parameter systems (DPSs)hidden Markov model (HMM)Markov jumpTakagi-Sugeno fuzzy modelEXPONENTIAL STABILITYCONTROL DESIGNPDE SYSTEMSSTABILIZATIONACTUATOR
제목
Finite-Time H-infinity Asynchronous Control for Nonlinear Markov Jump Distributed Parameter Systems via Quantized Fuzzy Output-Feedback Approach
저자
Song, XiaonaWang, MiAhn, Choon KiSong, Shuai
DOI
10.1109/TCYB.2019.2936827
발행일
2020-09
유형
Article
저널명
IEEE Transactions on Cybernetics
50
9
페이지
4098 ~ 4109