Adaptive feedback control and synchronization of non-identical chaotic fractional order systems
Identifieur interne : 000A75 ( Main/Exploration ); précédent : 000A74; suivant : 000A76Adaptive feedback control and synchronization of non-identical chaotic fractional order systems
Auteurs : Zaid M. Odibat [France]Source :
- Nonlinear Dynamics [ 0924-090X ] ; 2009-11-05.
English descriptors
- mix :
Abstract
This paper addresses the reliable synchronization problem between two non-identical chaotic fractional order systems. In this work, we present an adaptive feedback control scheme for the synchronization of two coupled chaotic fractional order systems with different fractional orders. Based on the stability results of linear fractional order systems and Laplace transform theory, using the master-slave synchronization scheme, sufficient conditions for chaos synchronization are derived. The designed controller ensures that fractional order chaotic oscillators that have non-identical fractional orders can be synchronized with suitable feedback controller applied to the response system. Numerical simulations are performed to assess the performance of the proposed adaptive controller in synchronizing chaotic systems.
Url:
DOI: 10.1007/s11071-009-9609-6
Affiliations:
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Le document en format XML
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<front><div type="abstract" xml:lang="en">This paper addresses the reliable synchronization problem between two non-identical chaotic fractional order systems. In this work, we present an adaptive feedback control scheme for the synchronization of two coupled chaotic fractional order systems with different fractional orders. Based on the stability results of linear fractional order systems and Laplace transform theory, using the master-slave synchronization scheme, sufficient conditions for chaos synchronization are derived. The designed controller ensures that fractional order chaotic oscillators that have non-identical fractional orders can be synchronized with suitable feedback controller applied to the response system. Numerical simulations are performed to assess the performance of the proposed adaptive controller in synchronizing chaotic systems.</div>
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