Nonlinear Dynamic Analysis and Synchronization of Four-Dimensional Lorenz-Stenflo System and Its Circuit Experimental Implementation

Recently many chaotic systems’ circuits are designed to generate phenomenon of chaos signals. The ability to synchronize chaotic circuits opens a great number of ways to use them in application signals masking. In this paper, first a new nonlinear chaotic dynamical system had be design, analyze and...

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Main Authors: Cheng-Hsiung Yang, Cheng-Lin Wu
Format: Article
Language:English
Published: Wiley 2014-01-01
Series:Abstract and Applied Analysis
Online Access:http://dx.doi.org/10.1155/2014/213694
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author Cheng-Hsiung Yang
Cheng-Lin Wu
author_facet Cheng-Hsiung Yang
Cheng-Lin Wu
author_sort Cheng-Hsiung Yang
collection DOAJ
description Recently many chaotic systems’ circuits are designed to generate phenomenon of chaos signals. The ability to synchronize chaotic circuits opens a great number of ways to use them in application signals masking. In this paper, first a new nonlinear chaotic dynamical system had be design, analyze and build circuit. Second, using GYC, partial region stability theory is applied to adaptive control for two identical chaotic systems with uncertain parameters. The results of numerical simulation are performed to verify examples of the proposed nonlinear controllers.
format Article
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institution Kabale University
issn 1085-3375
1687-0409
language English
publishDate 2014-01-01
publisher Wiley
record_format Article
series Abstract and Applied Analysis
spelling doaj-art-a3c338d99ed143509969d28b42c517052025-02-03T01:22:21ZengWileyAbstract and Applied Analysis1085-33751687-04092014-01-01201410.1155/2014/213694213694Nonlinear Dynamic Analysis and Synchronization of Four-Dimensional Lorenz-Stenflo System and Its Circuit Experimental ImplementationCheng-Hsiung Yang0Cheng-Lin Wu1Graduate Institute of Automation and Control, National Taiwan University of Science and Technology, No. 43, Section 4, Keelung Road, Taipei 106, TaiwanGraduate Institute of Automation and Control, National Taiwan University of Science and Technology, No. 43, Section 4, Keelung Road, Taipei 106, TaiwanRecently many chaotic systems’ circuits are designed to generate phenomenon of chaos signals. The ability to synchronize chaotic circuits opens a great number of ways to use them in application signals masking. In this paper, first a new nonlinear chaotic dynamical system had be design, analyze and build circuit. Second, using GYC, partial region stability theory is applied to adaptive control for two identical chaotic systems with uncertain parameters. The results of numerical simulation are performed to verify examples of the proposed nonlinear controllers.http://dx.doi.org/10.1155/2014/213694
spellingShingle Cheng-Hsiung Yang
Cheng-Lin Wu
Nonlinear Dynamic Analysis and Synchronization of Four-Dimensional Lorenz-Stenflo System and Its Circuit Experimental Implementation
Abstract and Applied Analysis
title Nonlinear Dynamic Analysis and Synchronization of Four-Dimensional Lorenz-Stenflo System and Its Circuit Experimental Implementation
title_full Nonlinear Dynamic Analysis and Synchronization of Four-Dimensional Lorenz-Stenflo System and Its Circuit Experimental Implementation
title_fullStr Nonlinear Dynamic Analysis and Synchronization of Four-Dimensional Lorenz-Stenflo System and Its Circuit Experimental Implementation
title_full_unstemmed Nonlinear Dynamic Analysis and Synchronization of Four-Dimensional Lorenz-Stenflo System and Its Circuit Experimental Implementation
title_short Nonlinear Dynamic Analysis and Synchronization of Four-Dimensional Lorenz-Stenflo System and Its Circuit Experimental Implementation
title_sort nonlinear dynamic analysis and synchronization of four dimensional lorenz stenflo system and its circuit experimental implementation
url http://dx.doi.org/10.1155/2014/213694
work_keys_str_mv AT chenghsiungyang nonlineardynamicanalysisandsynchronizationoffourdimensionallorenzstenflosystemanditscircuitexperimentalimplementation
AT chenglinwu nonlineardynamicanalysisandsynchronizationoffourdimensionallorenzstenflosystemanditscircuitexperimentalimplementation