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Exact synchronization bound for coupled time-delay systems

Abstract: We obtain an exact bound for synchronization in coupled time-delay systems using the generalized Halanay inequality for the general case of time-dependent delay, coupling, and coefficients. Furthermore, we show that the same analysis is applicable to both uni- and bidirectionally coupled time-delay systems with an appropriate evolution equation for their synchronization manifold, which can also be defined for different types of synchronization. The exact synchronization bound assures an exponential stabilization of the synchronization manifold which is crucial for applications. The analytical synchronization bound is independent of the nature of the modulation and can be applied to any time-delay system satisfying a Lipschitz condition. The analytical results are corroborated numerically using the Ikeda system.

 Authorship: Senthilkumar D.V., Pesquera L., Banerjee S., Ortín S., Kurths J.,

 Fuente: Phys. Rev. E 87, 044902

 Publisher: American Physical Society

 Year of publication: 2013

 No. of pages: 4

 Publication type: Article

 DOI: 10.1103/PhysRevE.87.044902

 ISSN: 1539-3755,1550-2376,2470-0045,2470-0053

 European project: info:eu-repo/grantAgreement/EC/FP7/240763/EU/Towards a PHOtonic liquid state machine based on delay-CoUpled Systems/PHOCUS/

 Publication Url: https://doi.org/10.1103/PhysRevE.87.044902

Authorship

SENTHILKUMAR, D. V.

LUIS PESQUERA GONZALEZ

BANERJEE, SANTO

SILVIA ORTIN GONZALEZ

KURTHS, J.