THE STUDY OF MULTISTABILITY AND EXTERNAL SYNCHRONIZATION IN NONAUTONOMOUS SYSTEM OF TWO COUPLED VAN DER POL OSCILLATORS WITH REPULSIVE COUPLING


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Gulay А. P., Buh A. V. THE STUDY OF MULTISTABILITY AND EXTERNAL SYNCHRONIZATION IN NONAUTONOMOUS SYSTEM OF TWO COUPLED VAN DER POL OSCILLATORS WITH REPULSIVE COUPLING. Izvestiya VUZ. Applied Nonlinear Dynamics, 2014, vol. 22, iss. 6, pp. 94-103. DOI: https://doi.org/10.18500/0869-6632-2014-22-6-94-103​


 

In this paper we study the bifurcational mechanisms of synchronization and multistability formation in a system of two interacting van der Pol oscillators, one of which is under external harmonic forcing. We draw a two­parametric bifurcation diagram for phasereduced system and study its evolution in transition from symmetrical to asymmetrical repulsive interaction. Relying on the results of bifurcation analysis of non­reduced system we conclude that the synchronization scenarios found in the phase­reduced system correspond to the ones in the non­reduced system.

DOI: 
10.18500/0869-6632-2014-22-6-94-103​
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BibTeX

@article{Гулай -IzvVUZ_AND-22-6-94,
author = {А. P. Gulay and Andrey Vladimirovich Buh},
title = {THE STUDY OF MULTISTABILITY AND EXTERNAL SYNCHRONIZATION IN NONAUTONOMOUS SYSTEM OF TWO COUPLED VAN DER POL OSCILLATORS WITH REPULSIVE COUPLING},
year = {2014},
journal = {Izvestiya VUZ. Applied Nonlinear Dynamics},
volume = {22},number = {6},
url = {https://old-andjournal.sgu.ru/en/articles/the-study-of-multistability-and-external-synchronization-in-nonautonomous-system-of-two},
address = {Саратов},
language = {russian},
doi = {10.18500/0869-6632-2014-22-6-94-103​},pages = {94--103},issn = {0869-6632},
keywords = {synchronization,multistability,bifurcations,asymmetrical coupling.},
abstract = {  In this paper we study the bifurcational mechanisms of synchronization and multistability formation in a system of two interacting van der Pol oscillators, one of which is under external harmonic forcing. We draw a two­parametric bifurcation diagram for phasereduced system and study its evolution in transition from symmetrical to asymmetrical repulsive interaction. Relying on the results of bifurcation analysis of non­reduced system we conclude that the synchronization scenarios found in the phase­reduced system correspond to the ones in the non­reduced system. }}