Items related to FROM CHAOS TO ORDER: METHODOLOGIES, PERSPECTIVES AND...

FROM CHAOS TO ORDER: METHODOLOGIES, PERSPECTIVES AND APPLICATIONS: 24 (WORLD SCIENTIFIC SERIES ON NONLINEAR SCIENCE SERIES A) - Hardcover

Chen, Guanrong; Dong, Xiaoning

 
9789810225698: FROM CHAOS TO ORDER: METHODOLOGIES, PERSPECTIVES AND APPLICATIONS: 24 (WORLD SCIENTIFIC SERIES ON NONLINEAR SCIENCE SERIES A)

Synopsis

Chaos control has become a fast-developing interdisciplinary research field in recent years. This book is for engineers and applied scientists who want to have a broad understanding of the emerging field of chaos control. It describes fundamental concepts, outlines representative techniques, provides case studies, and highlights recent developments, putting the reader at the forefront of current research.Important topics presented in the book include:Fundamentals of nonlinear dynamical systems, essential for understanding and developing chaos control methods.;Parametric variation and parameter tuning techniques.;External forcing and entrainment ― migration controls.;Various engineering feedback approaches: Lyapunov-type of controls, optimal control, adaptive control, robust control, sliding-mode control, intelligent controls (using neural networks and fuzzy logic), digital control, stochastic control, filtering, entropy reduction, etc.;Frequency-domain approaches.;Local or decentralized controls for spatiotemporal chaos.;Chaos synchronization through system decomposition, feedback, and inverse system approach; various methods of synchronization including generalized and phase synchronization, autosynchronization; communication based on chaos synchronization.;Bifurcation control, anticontrol of chaos, pattern formation, and disorder-enhanced chaos control.;

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Synopsis

Ordering (or controlling) chaos is a new concept, which has recently attracted much attention from the communities of mathematics, physics, engineering and biomedical and computer sciences. This publication offers an introduction to various successful methods for the control of chaos in nonlinear dynamical systems. The authors intend to present a self-contained, elementary and rigorous treatment of the subject, and to provide a firm basis for the further study and research in this rapidly developing direction, in the important field of nonlinear systems dynamics and control.

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