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Synchronisation of Lorenz systems via combining drive and Delayed Feedback Control methods

Synchronisation of Lorenz systems via combining drive and Delayed Feedback Control methods The synchronisation problem of Lorenz system is further investigated in this paper. On the basis of the Lyapunov stability theory, some simple and useful criteria for synchronisation to be delay-independent asymptotically stable are presented via combining drive and Delayed Feedback Control (DFC) methods. Especially, only one controller is needed to obtain synchronisation asymptotically. Theoretical analysis and numerical simulations show the effectiveness and feasibility of the proposed schemes. http://www.deepdyve.com/assets/images/DeepDyve-Logo-lg.png International Journal of Systems, Control and Communications Inderscience Publishers

Synchronisation of Lorenz systems via combining drive and Delayed Feedback Control methods

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References (19)

Publisher
Inderscience Publishers
Copyright
Copyright © Inderscience Enterprises Ltd. All rights reserved
ISSN
1755-9340
eISSN
1755-9359
DOI
10.1504/IJSCC.2009.026326
Publisher site
See Article on Publisher Site

Abstract

The synchronisation problem of Lorenz system is further investigated in this paper. On the basis of the Lyapunov stability theory, some simple and useful criteria for synchronisation to be delay-independent asymptotically stable are presented via combining drive and Delayed Feedback Control (DFC) methods. Especially, only one controller is needed to obtain synchronisation asymptotically. Theoretical analysis and numerical simulations show the effectiveness and feasibility of the proposed schemes.

Journal

International Journal of Systems, Control and CommunicationsInderscience Publishers

Published: Jan 1, 2009

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