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Analysis of Perturbed Synchronization of Piecewise Rössler Using Sliding Modes Control
In this paper, an analysis for chaos synchronization under nonvanishing perturbations is presented. In particular, we use sliding modes control to synchronize perturbed chaotic systems. We will use two Piecewise Rössler systems unidirectionally coupled, the first like a master and the other like a p...
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Published in: | Revista IEEE América Latina 2015-08, Vol.13 (8), p.2482-2487 |
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container_title | Revista IEEE América Latina |
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creator | Lopez Mancilla, Didier Villafana Rauda, Edgar Garcia Lopez, Juan Hugo Jaimes Reategui, Rider Huerta Cuellar, Guillermo Chiu, Roger |
description | In this paper, an analysis for chaos synchronization under nonvanishing perturbations is presented. In particular, we use sliding modes control to synchronize perturbed chaotic systems. We will use two Piecewise Rössler systems unidirectionally coupled, the first like a master and the other like a perturbed slave. The proposed controller is able to synchronize disturbed chaotic systems, even with elimination of chattering problem. Some simulations are presented. |
doi_str_mv | 10.1109/TLA.2015.7331901 |
format | article |
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Some simulations are presented.</description><identifier>ISSN: 1548-0992</identifier><identifier>EISSN: 1548-0992</identifier><identifier>DOI: 10.1109/TLA.2015.7331901</identifier><language>eng</language><publisher>Los Alamitos: IEEE</publisher><subject>Chaos ; Chaos synchronization ; Chaos theory ; Controllers ; Kalman filters ; nonvanishing perturbations ; Perturbation methods ; Piecewise Rössler system ; Robustness ; Silicon ; Silicon compounds ; Simulation ; Sliding mode control ; sliding modes control ; Synchronism ; Synchronization ; Vibration</subject><ispartof>Revista IEEE América Latina, 2015-08, Vol.13 (8), p.2482-2487</ispartof><rights>Copyright The Institute of Electrical and Electronics Engineers, Inc. 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subjects | Chaos Chaos synchronization Chaos theory Controllers Kalman filters nonvanishing perturbations Perturbation methods Piecewise Rössler system Robustness Silicon Silicon compounds Simulation Sliding mode control sliding modes control Synchronism Synchronization Vibration |
title | Analysis of Perturbed Synchronization of Piecewise Rössler Using Sliding Modes Control |
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