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Frequency synchronization and phase agreement in Kuramoto oscillator networks with delays

机译:时滞藏本振荡器网络中的频率同步和相位协议

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We investigate frequency synchronization and phase agreement in networks of non-identical Kuramoto oscillators with delayed coupling. We provide delay-dependent lower bounds for the coupling gain so that a network with all-to-all coupling and constant heterogeneous delays achieves synchronization. The given bounds are determined explicitly by the system parameters. Furthermore, we show that frequency synchronization and phase agreement are possible in general directed networks of nonidentical oscillators which contain a spanning tree if the delays satisfy a self-consistency condition. Networks with delays differ at this point notably from networks without delays, because phase agreement is not possible in undelayed non-identical Kuramoto oscillator networks. In addition to the sufficient conditions for synchronization, we investigate the connection between phase agreement and the existence of solutions of a necessary self-consistency condition.
机译:我们研究了具有延迟耦合的非相同仓本振荡器网络中的频率同步和相位协议。我们为耦合增益提供了与延迟有关的下限,因此具有所有耦合和恒定异构延迟的网络可实现同步。给定范围由系统参数明确确定。此外,我们表明,如果延迟满足自洽条件,则在包含生成树的不相同振荡器的通用定向网络中,频率同步和相位一致性是可能的。具有延迟的网络在这一点上与没有延迟的网络特别不同,因为在未延迟的不相同的仓本振荡器网络中不可能实现相位一致。除了足够的同步条件外,我们还研究了相位协议与必要的自洽条件的解的存在之间的联系。

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