Guaranteed Estimates for the Length of Branches of Periodic Orbits for Equivariant Hopf Bifurcation

Author:

Hooton Edward1,Balanov Zalman23ORCID,Rachinskii Dmitrii2

Affiliation:

1. Institute of Mathematics, Czech Academy of Sciences, Žitná 25, 11567, Prague 11567, Czech Republic

2. Department of Mathematical Sciences, The University of Texas at Dallas, 800 West Campbell Road, Richardson, TX 75080, USA

3. Department of Mathematics, Xiangnan University, 889 Chen Zhou Da Dao, Chenzhou, Hunan 423000, P. R. China

Abstract

Connected branches of periodic orbits originating at a Hopf bifurcation point of a differential system are considered. A computable estimate for the range of amplitudes of periodic orbits contained in the branch is provided under the assumption that the nonlinear terms satisfy a linear estimate in a ball. If the estimate is global, then the branch is unbounded. The results are formulated in an equivariant setting where the system can have multiple branches of periodic orbits characterized by different groups of symmetries. The nonlocal analysis is based on the equivariant degree method, which allows us to handle both generic and degenerate Hopf bifurcations. This is illustrated by examples.

Publisher

World Scientific Pub Co Pte Lt

Subject

Applied Mathematics,Modelling and Simulation,Engineering (miscellaneous)

Reference20 articles.

1. Global Bifurcations of Periodic Orbits

2. Hopf bifurcation in a van der Pol type oscillator with magnetic hysteresis

3. AIMS Series on Differential Equations and Dynamical Systems;Balanov Z.,2006

4. Hopf Bifurcation in Symmetric Networks of Coupled Oscillators with Hysteresis

5. Graduate Texts in Mathematics;Bröcker T.,1995

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