A research on the synchronization of two novel chaotic systems based on a nonlinear active control algorithm
The problem of chaos synchronization is to design a coupling between two chaotic systems (master-slave/drive-response systems configuration) such that the chaotic time evaluation becomes ideal and the output of the slave (response) system asymptotically follows the output of the master (drive) syste...
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my.uum.repo.148892016-04-27T00:11:03Z http://repo.uum.edu.my/14889/ A research on the synchronization of two novel chaotic systems based on a nonlinear active control algorithm Ahmad, Israr Saaban, Azizan Ibrahim, Adyda Shahzad, Mohammad QA76 Computer software The problem of chaos synchronization is to design a coupling between two chaotic systems (master-slave/drive-response systems configuration) such that the chaotic time evaluation becomes ideal and the output of the slave (response) system asymptotically follows the output of the master (drive) system.This paper has addressed the chaos synchronization problem of two chaotic systems using the Nonlinear Control Techniques, based on Lyapunov stability theory.It has been shown that the proposed schemes have outstanding transient performances and that analytically as well as graphically, synchronization is asymptotically globally stable.Suitable feedback controllers are designed to stabilize the closed-loop system at the origin. All simulation results are carried out to corroborate the effectiveness of the proposed methodologies by using Mathematica 9. 2015 Article PeerReviewed application/pdf en cc_by http://repo.uum.edu.my/14889/1/434-1495-1-PB.pdf Ahmad, Israr and Saaban, Azizan and Ibrahim, Adyda and Shahzad, Mohammad (2015) A research on the synchronization of two novel chaotic systems based on a nonlinear active control algorithm. Engineering, Technology & Applied Science Research, 5 (1). pp. 739-747. ISSN 1792-8036 http://etasr.com/index.php/ETASR/article/view/434 |
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QA76 Computer software Ahmad, Israr Saaban, Azizan Ibrahim, Adyda Shahzad, Mohammad A research on the synchronization of two novel chaotic systems based on a nonlinear active control algorithm |
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The problem of chaos synchronization is to design a coupling between two chaotic systems (master-slave/drive-response systems configuration) such that the chaotic time evaluation becomes ideal and the output of the slave (response) system asymptotically follows the output of the master (drive) system.This paper has addressed the chaos synchronization problem of two chaotic systems using the Nonlinear Control Techniques, based on Lyapunov stability theory.It has been shown that the proposed schemes have outstanding transient performances and that analytically as well as graphically, synchronization is asymptotically globally stable.Suitable feedback controllers are designed to stabilize the closed-loop system at the origin. All simulation results are carried out to corroborate the effectiveness of the proposed methodologies by using Mathematica 9. |
format |
Article |
author |
Ahmad, Israr Saaban, Azizan Ibrahim, Adyda Shahzad, Mohammad |
author_facet |
Ahmad, Israr Saaban, Azizan Ibrahim, Adyda Shahzad, Mohammad |
author_sort |
Ahmad, Israr |
title |
A research on the synchronization of two novel
chaotic systems based on a nonlinear active
control algorithm |
title_short |
A research on the synchronization of two novel
chaotic systems based on a nonlinear active
control algorithm |
title_full |
A research on the synchronization of two novel
chaotic systems based on a nonlinear active
control algorithm |
title_fullStr |
A research on the synchronization of two novel
chaotic systems based on a nonlinear active
control algorithm |
title_full_unstemmed |
A research on the synchronization of two novel
chaotic systems based on a nonlinear active
control algorithm |
title_sort |
research on the synchronization of two novel
chaotic systems based on a nonlinear active
control algorithm |
publishDate |
2015 |
url |
http://repo.uum.edu.my/14889/1/434-1495-1-PB.pdf http://repo.uum.edu.my/14889/ http://etasr.com/index.php/ETASR/article/view/434 |
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13.211869 |