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2012 Design of PDC Controllers by Matrix Reversibility for Synchronization of Yin and Yang Chaotic Takagi-Sugeno Fuzzy Henon Maps
Chun-Yen Ho, Hsien-Keng Chen, Zheng-Ming Ge
Abstr. Appl. Anal. 2012: 1-11 (2012). DOI: 10.1155/2012/358201

Abstract

This paper investigates the synchronization of Yin and Yang chaotic T-S fuzzy Henon maps via PDC controllers. Based on the Chinese philosophy, Yin is the decreasing, negative, historical, or feminine principle in nature, while Yang is the increasing, positive, contemporary, or masculine principle in nature. Yin and Yang are two fundamental opposites in Chinese philosophy. The Henon map is an invertible map; so the Henon maps with increasing and decreasing argument can be called the Yang and Yin Henon maps, respectively. Chaos synchronization of Yin and Yang T-S fuzzy Henon maps is achieved by PDC controllers. The design of PDC controllers is based on the linear invertible matrix theory. The T-S fuzzy model of Yin and Yang Henon maps and the design of PDC controllers are novel, and the simulation results show that the approach is effective.

Citation

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Chun-Yen Ho. Hsien-Keng Chen. Zheng-Ming Ge. "Design of PDC Controllers by Matrix Reversibility for Synchronization of Yin and Yang Chaotic Takagi-Sugeno Fuzzy Henon Maps." Abstr. Appl. Anal. 2012 1 - 11, 2012. https://doi.org/10.1155/2012/358201

Information

Published: 2012
First available in Project Euclid: 28 March 2013

zbMATH: 1256.93052
MathSciNet: MR2994956
Digital Object Identifier: 10.1155/2012/358201

Rights: Copyright © 2012 Hindawi

Vol.2012 • 2012
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