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同调优化的非同质振子 Kuramoto 模型网络拓扑结构。

On the topology of synchrony optimized networks of a Kuramoto-model with non-identical oscillators.

机构信息

School of Mathematics and Statistics, University of Sydney, New South Wales 2006, Australia.

出版信息

Chaos. 2011 Jun;21(2):025110. doi: 10.1063/1.3590855.

Abstract

We study synchrony optimized networks. In particular, we focus on the Kuramoto model with non-identical native frequencies on a random graph. In a first step, we generate synchrony optimized networks using a dynamic breeding algorithm, whereby an initial network is successively rewired toward increased synchronization. These networks are characterized by a large anti-correlation between neighbouring frequencies. In a second step, the central part of our paper, we show that synchrony optimized networks can be generated much more cost efficiently by minimization of an energy-like quantity E and subsequent random rewires to control the average path length. We demonstrate that synchrony optimized networks are characterized by a balance between two opposing structural properties: A large number of links between positive and negative frequencies of equal magnitude and a small average path length. Remarkably, these networks show the same synchronization behaviour as those networks generated by the dynamic rewiring process. Interestingly, synchrony-optimized network also exhibit significantly enhanced synchronization behaviour for weak coupling, below the onset of global synchronization, with linear growth of the order parameter with increasing coupling strength. We identify the underlying dynamical and topological structures, which give rise to this atypical local synchronization, and provide a simple analytical argument for its explanation.

摘要

我们研究了同步优化网络。特别是,我们专注于具有随机图上非相同固有频率的 Kuramoto 模型。在第一步中,我们使用动态繁殖算法生成同步优化网络,其中初始网络会逐步重新布线以增加同步性。这些网络的特点是相邻频率之间存在很大的反相关性。在论文的第二步中,我们表明通过最小化类似能量的量 E 并随后进行随机重布线来控制平均路径长度,可以更有效地生成同步优化网络。我们证明了同步优化网络的特点是两种相反结构特性之间的平衡:大量具有相同大小的正频率和负频率之间的链接,以及平均路径长度较小。值得注意的是,这些网络表现出与通过动态重布线过程生成的网络相同的同步行为。有趣的是,同步优化网络在弱耦合下也表现出显著增强的同步行为,低于全局同步的开始,随着耦合强度的增加,序参量呈线性增长。我们确定了导致这种非典型局部同步的基础动力学和拓扑结构,并提供了一个简单的分析论点来解释它。

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