Controlling Chaos and Bifurcations in Engineering Systems
by Guanrong Chen, Goong Chen, J.K. Fidler, Jianxin Zhou, Phil Mars, Ir Joos Vandewalle, Martin Hasler, Thomas L. Vincent, Alberto Tesi, Andrzej Borys, Geza Kolumban, Alistair I. Mees, Luis Antonio Aguirre, Maciej Ogorzalek, T. Kapitaniak, J. Brindley, K. Czolczynski, Jin-Qing Fang, M. Keramat Ali, Sze-Bi Hsu, G. Q. Zhong, Z. F. Liu, K. S. Tang, K. F. Man, S. Kwong, Michele Basso, Roberto Genesio, Lorenzo Giovanardi, Guillermo Calandrini, Eduardo Paolini, Jorge L. Moiola, Patrick Celka, Xinghuo Yu, Yuping Tian, J.A.K. Suykens, T. Yang, L.O. Chua, Hua O. Wang, Dong S. Chen, Michael E. Brandt, Guoxiang Gu, Andrew Sparks, Wei Kang, Mario Di Bernardo, A. L. Fradkov, H. Nijmeijer, A. Yu. Pogromsky, H.J.C. Huijberts, Hervé Dedieu, Thomas Schimming, Michael Peter Kennedy, Chai Wah Wu, V.D. Shalfeev, V.V. Matrosov, M.V. Korzinova, Joaquin Andreu Alvarez, Fernando Verduzco, Tetsushi Ueta, Toshimichi Saito, Hiroyuki Torikai, Toshimitsu Ushio, Takehiro Imamori, Tatsushi Yamasaki
A technical reference exploring methods to analyze and control chaos and bifurcations in engineering systems, featuring contributions from international experts.
About This Book
This book addresses the analysis and control of nonlinear dynamical behavior in engineering contexts.
It covers theoretical foundations and practical methods for managing chaotic systems and bifurcations.
Contributions from leading researchers provide a broad perspective on the subject.
The content is suitable for engineers, scientists, and advanced students working with complex systems.
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