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首页> 外文期刊>Bulletin of the American Physical Society >APS -APS March Meeting 2017 - Event - Improving synchronization via local rewiring in networks of Kuramoto oscillators
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APS -APS March Meeting 2017 - Event - Improving synchronization via local rewiring in networks of Kuramoto oscillators

机译:APS -APS 2017年3月会议-活动-通过Kuramoto振荡器网络中的本地重新布线改善同步

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摘要

Synchronization of non-identical oscillators coupled through complex networks is an important example of collective behavior, and many studies examine how the architecture of interactions shapes synchronization patterns. Here, we focus on adaptive networks, where the structure of the underlying network changes in response to the node dynamics. In particular, we use the Kuramoto model to investigate how via a local rewiring rule, an initially random network converges to a topology that supports improved synchronization. The adaptation strategy preserves the total number of edges, and depends only on instantaneous, pairwise phase differences of neighboring nodes. In the case of binary, undirected networks, a local rule that preserves connections between more desynchronized oscillators, and that breaks and rewires connections between more in phase oscillators, can improve synchronization. Furthermore, in line with results from studies on optimal synchronization, throughout adaptation the Laplacian spectra and the relationship between its eigenvectors and the intrinsic frequencies undergo specific changes. Finally, we find that after sufficient adaptation, the resulting network exhibits degree - frequency and frequency - neighbor frequency correlations that have been associated with explosive synchronization transitions. By considering the interplay between structure and dynamics, this work helps elucidate a mechanism through which emergent phenomena can arise in complex systems.
机译:通过复杂网络耦合的不相同的振荡器的同步是集体行为的重要示例,许多研究检查了交互的体系结构如何塑造同步模式。在这里,我们关注于自适应网络,其中底层网络的结构响应于节点动态而变化。特别是,我们使用Kuramoto模型来研究如何通过本地重新布线规则将最初随机的网络收敛到支持改进的同步性的拓扑。自适应策略保留了边缘的总数,并且仅取决于相邻节点的瞬时,成对的相位差。在二进制,无向网络的情况下,保留更多不同步振荡器之间的连接并中断并重新连接更多同相振荡器之间的连接的本地规则可以改善同步。此外,根据最佳同步研究的结果,在整个适应过程中,拉普拉斯谱及其特征向量与固有频率之间的关系都会发生特定变化。最后,我们发现经过充分的调整后,所得网络显示出与爆炸性同步跃迁相关的度-频率和频-邻频率相关性。通过考虑结构和动力学之间的相互作用,这项工作有助于阐明一种机制,通过该机制可以在复杂系统中出现紧急现象。

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