Fr. 177.60

Hopf Bifurcation Analysis: A Frequency Domain Approach

English · Hardback

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This book is devoted to the frequency domain approach, for both regular and degenerate Hopf bifurcation analyses. Besides showing that the time and frequency domain approaches are in fact equivalent, the fact that many significant results and computational formulas obtained in the studies of regular and degenerate Hopf bifurcations from the time domain approach can be translated and reformulated into the corresponding frequency domain setting, and be reconfirmed and rediscovered by using the frequency domain methods, is also explained. The description of how the frequency domain approach can be used to obtain several types of standard bifurcation conditions for general nonlinear dynamical systems is given as well as is demonstrated a very rich pictorial gallery of local bifurcation diagrams for nonlinear systems under simultaneous variations of several system parameters. In conjunction with this graphical analysis of local bifurcation diagrams, the defining and nondegeneracy conditions for several degenerate Hopf bifurcations is presented. With a great deal of algebraic computation, some higher-order harmonic balance approximation formulas are derived, for analyzing the dynamical behavior in small neighborhoods of certain types of degenerate Hopf bifurcations that involve multiple limit cycles and multiple limit points of periodic solutions. In addition, applications in chemical, mechanical and electrical engineering as well as in biology are discussed. This book is designed and written in a style of research monographs rather than classroom textbooks, so that the most recent contributions to the field can be included with references.

Product details

Authors G. Chen, Guan Rong Chen, Guanrong Chen, Jorge L. Moiola, Jorge Luis Moiola
Publisher World Scientific Publishing Company
 
Languages English
Product format Hardback
Released 01.04.1996
 
EAN 9789810226282
ISBN 978-981-02-2628-2
No. of pages 344
Dimensions 152 mm x 216 mm x 23 mm
Weight 599 g
Series World Scientific Series in Non
World Scientific Series on Nonlinear Science Series A
World Scientific Series in Non
World Scientific Nonlinear Sci
Subject Natural sciences, medicine, IT, technology > Mathematics > Miscellaneous

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