Master-slave H-Infinity robust controller design for synchronization of chaotic systems

This paper is devoted to robust master-slave controller design for generalized chaotic systems synchronization. The closed-loop system is asymptotically stable when the robust stability conditions hold and while the H-Infinity norm of the closed-loop transfer function with respect to defined output...

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Main Authors: Vojtech Vesely, Adrian Ilka, Ladislav Korosi, Martin Ernek
Format: Article
Language:English
Published: Norwegian Society of Automatic Control 2019-01-01
Series:Modeling, Identification and Control
Subjects:
Online Access:http://www.mic-journal.no/PDF/2019/MIC-2019-1-4.pdf
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spelling doaj-a0eb6b26af664573ab212107955b4fef2020-11-25T01:18:27ZengNorwegian Society of Automatic ControlModeling, Identification and Control0332-73531890-13282019-01-01401415010.4173/mic.2019.1.4Master-slave H-Infinity robust controller design for synchronization of chaotic systemsVojtech VeselyAdrian IlkaLadislav KorosiMartin ErnekThis paper is devoted to robust master-slave controller design for generalized chaotic systems synchronization. The closed-loop system is asymptotically stable when the robust stability conditions hold and while the H-Infinity norm of the closed-loop transfer function with respect to defined output and input is strictly less than gamma>0. In this paper a modified L2 gain approach is used and an original design procedure is proposed to decrease the conservativeness of the former method. The effectiveness of the proposed method is shown in numerical examples.http://www.mic-journal.no/PDF/2019/MIC-2019-1-4.pdfChaotic systemsmaster-slave systemsH-Infinity robust controllerSynchronization of chaotic systemsL2 gain performance
collection DOAJ
language English
format Article
sources DOAJ
author Vojtech Vesely
Adrian Ilka
Ladislav Korosi
Martin Ernek
spellingShingle Vojtech Vesely
Adrian Ilka
Ladislav Korosi
Martin Ernek
Master-slave H-Infinity robust controller design for synchronization of chaotic systems
Modeling, Identification and Control
Chaotic systems
master-slave systems
H-Infinity robust controller
Synchronization of chaotic systems
L2 gain performance
author_facet Vojtech Vesely
Adrian Ilka
Ladislav Korosi
Martin Ernek
author_sort Vojtech Vesely
title Master-slave H-Infinity robust controller design for synchronization of chaotic systems
title_short Master-slave H-Infinity robust controller design for synchronization of chaotic systems
title_full Master-slave H-Infinity robust controller design for synchronization of chaotic systems
title_fullStr Master-slave H-Infinity robust controller design for synchronization of chaotic systems
title_full_unstemmed Master-slave H-Infinity robust controller design for synchronization of chaotic systems
title_sort master-slave h-infinity robust controller design for synchronization of chaotic systems
publisher Norwegian Society of Automatic Control
series Modeling, Identification and Control
issn 0332-7353
1890-1328
publishDate 2019-01-01
description This paper is devoted to robust master-slave controller design for generalized chaotic systems synchronization. The closed-loop system is asymptotically stable when the robust stability conditions hold and while the H-Infinity norm of the closed-loop transfer function with respect to defined output and input is strictly less than gamma>0. In this paper a modified L2 gain approach is used and an original design procedure is proposed to decrease the conservativeness of the former method. The effectiveness of the proposed method is shown in numerical examples.
topic Chaotic systems
master-slave systems
H-Infinity robust controller
Synchronization of chaotic systems
L2 gain performance
url http://www.mic-journal.no/PDF/2019/MIC-2019-1-4.pdf
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AT ladislavkorosi masterslavehinfinityrobustcontrollerdesignforsynchronizationofchaoticsystems
AT martinernek masterslavehinfinityrobustcontrollerdesignforsynchronizationofchaoticsystems
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