Zhang Huixin, Zhang Weidong, Gao Jianxi
Shanghai Jiao Tong University, Automation, Shanghai, 200240, China.
Rensselaer Polytechnic Institute, Computer Science Department & Network Science and Technology Center, Troy, New York, 12180, USA.
Sci Rep. 2019 Apr 16;9(1):6154. doi: 10.1038/s41598-019-42636-6.
Increasing evidence shows that real networks interact with each other, forming a network of networks (NONs). Synchronization, a ubiquitous process in natural and engineering systems, has fascinatingly gained rising attentions in the context of NONs. Despite efforts to study the synchronization of NONs, it is still a challenge to understand how do the network sizes affect the synchronization and its phase diagram of NONs coupled with nonlinear dynamics. Here, we model such NONs as star-like motifs to analytically derive the critical values of both the internal and the external coupling strengths, at which a phase transition from synchronization to incoherence occurs. Our results show that the critical values strongly depend on the network sizes. Reducing the difference between network sizes will enhance the synchronization of the whole system, which indicates the irrationality of previous studies that assume the network sizes to be the same. The optimal connection strategy also changes as the network sizes change, a discovery contradicting to the previous conclusion that connecting the high-degree nodes of each network is always the most effective strategy to achieve synchronization unchangeably. This finding emphasizes the crucial role of network sizes which has been neglected in the previous studies and could contribute to the design of a global synchronized system.
越来越多的证据表明,真实网络相互作用,形成了一个网络的网络(NONs)。同步是自然和工程系统中普遍存在的过程,在NONs的背景下,它令人着迷地获得了越来越多的关注。尽管人们努力研究NONs的同步,但要理解网络规模如何影响NONs与非线性动力学耦合时的同步及其相图,仍然是一个挑战。在这里,我们将此类NONs建模为星状图案,以解析得出内部和外部耦合强度的临界值,在该临界值处会发生从同步到非相干的相变。我们的结果表明,临界值强烈依赖于网络规模。减小网络规模之间的差异将增强整个系统的同步,这表明之前假设网络规模相同的研究是不合理的。随着网络规模的变化,最优连接策略也会改变,这一发现与之前的结论相矛盾,即始终连接每个网络的高度节点是实现同步的最有效策略。这一发现强调了网络规模在之前研究中被忽视的关键作用,并且可能有助于设计一个全局同步系统。