Asynchronous Control of Continuous-Time Nonlinear Markov Jump Systems Subject to Strict Dissipativity
This paper addresses the strictly dissipative control problem for continuous-time nonlinear Markov jump systems via Takagi-Sugeno fuzzy rules. The modes of a devised fuzzy controller are assumed to run asynchronously with the modes of original system, which is widespread in practice and described th...
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Published in | IEEE transactions on automatic control Vol. 64; no. 3; pp. 1250 - 1256 |
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Main Authors | , , , , |
Format | Journal Article |
Language | English |
Published |
New York
IEEE
01.03.2019
The Institute of Electrical and Electronics Engineers, Inc. (IEEE) |
Subjects | |
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Abstract | This paper addresses the strictly dissipative control problem for continuous-time nonlinear Markov jump systems via Takagi-Sugeno fuzzy rules. The modes of a devised fuzzy controller are assumed to run asynchronously with the modes of original system, which is widespread in practice and described through a hidden Markov model. A sufficient condition is acquired to ensure the stochastic stability and strict dissipativity of the closed-loop systems, based on which the design method of an asynchronous fuzzy controller is provided. Finally, one example is presented to illustrate the effectiveness and new features of the proposed design techniques. |
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AbstractList | This paper addresses the strictly dissipative control problem for continuous-time nonlinear Markov jump systems via Takagi-Sugeno fuzzy rules. The modes of a devised fuzzy controller are assumed to run asynchronously with the modes of original system, which is widespread in practice and described through a hidden Markov model. A sufficient condition is acquired to ensure the stochastic stability and strict dissipativity of the closed-loop systems, based on which the design method of an asynchronous fuzzy controller is provided. Finally, one example is presented to illustrate the effectiveness and new features of the proposed design techniques. |
Author | Dong, Shanling Shi, Peng Karimi, Hamid Reza Wu, Zheng-Guang Su, Hongye |
Author_xml | – sequence: 1 givenname: Shanling orcidid: 0000-0002-1754-1829 surname: Dong fullname: Dong, Shanling email: dongshanling@iipc.zju.edu.cn organization: State Key Laboratory of Industrial Control Technology, Institute of Cyber-Systems and Control, Zhejiang University, Hangzhou, China – sequence: 2 givenname: Zheng-Guang orcidid: 0000-0003-4460-9785 surname: Wu fullname: Wu, Zheng-Guang email: nashwzhg@zju.edu.cn organization: State Key Laboratory of Industrial Control Technology, Institute of Cyber-Systems and Control, Zhejiang University, Hangzhou, China – sequence: 3 givenname: Hongye orcidid: 0000-0002-7003-1000 surname: Su fullname: Su, Hongye email: hysu@iipc.zju.edu.cn organization: State Key Laboratory of Industrial Control Technology, Institute of Cyber-Systems and Control, Zhejiang University, Hangzhou, China – sequence: 4 givenname: Peng orcidid: 0000-0001-8218-586X surname: Shi fullname: Shi, Peng email: peng.shi@adelaide.edu.au organization: School of Electrical and Electronic Engineering, University of Adelaide, Adelaide, SA, Australia – sequence: 5 givenname: Hamid Reza orcidid: 0000-0001-7629-3266 surname: Karimi fullname: Karimi, Hamid Reza email: hamidreza.karimi@polimi.it organization: Department of Mechanical Engineering, Politecnico di Milano, Milan, Italy |
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Snippet | This paper addresses the strictly dissipative control problem for continuous-time nonlinear Markov jump systems via Takagi-Sugeno fuzzy rules. The modes of a... This paper addresses the strictly dissipative control problem for continuous-time nonlinear Markov jump systems via Takagi–Sugeno fuzzy rules. The modes of a... |
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SubjectTerms | Asynchronous control Closed loop systems Controllers Feedback control Fuzzy control fuzzy rules Fuzzy systems Hidden Markov models Markov chains Markov jump systems Markov processes Nonlinear control Nonlinear systems Stability analysis strict dissipativity |
Title | Asynchronous Control of Continuous-Time Nonlinear Markov Jump Systems Subject to Strict Dissipativity |
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