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Synchronization in slowly switching networks of coupled oscillators

机译:耦合振荡器的慢切换网络中的同步

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摘要

Networks whose structure of connections evolves in time constitute a big challenge in the study of synchronization, in particular when the time scales for the evolution of the graph topology are comparable with (or even longer than) those pertinent to the units’ dynamics. We here focus on networks with a slow-switching structure, and show that the necessary conditions for synchronization, i.e. the conditions for which synchronization is locally stable, are determined by the time average of the largest Lyapunov exponents of transverse modes of the switching topologies. Comparison between fast- and slow-switching networks allows elucidating that slow-switching processes prompt synchronization in the cases where the Master Stability Function is concave, whereas fast-switching schemes facilitate synchronization for convex curves. Moreover, the condition of slow-switching enables the introduction of a control strategy for inducing synchronization in networks with arbitrary structure and coupling strength, which is of evident relevance for broad applications in real world systems.
机译:连接结构随时间变化的网络在同步研究中构成了很大的挑战,特别是当图拓扑的演化时间尺度与单位动态相关的尺度可比(甚至更长)时。在这里,我们集中于具有慢切换结构的网络,并且表明同步的必要条件,即本地稳定的同步条件,是由切换拓扑的横向模式的最大Lyapunov指数的时间平均值确定的。快速和慢速切换网络之间的比较可以说明,在主稳定功能为凹形的情况下,慢速切换过程会促进同步,而快速切换方案则有助于凸曲线的同步。此外,慢速切换的条件允许引入一种控制策略,以在具有任意结构和耦合强度的网络中引起同步,这对于在现实世界中的广泛应用具有明显的意义。

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