Guan Shuguang, Wang Xingang, Li Kun, Wang Bing-Hong, Lai C-H
Temasek Laboratories, National University of Singapore, 117508 Singapore.
Chaos. 2008 Mar;18(1):013120. doi: 10.1063/1.2841198.
It has been shown that synchronizability of a network is determined by the local structure rather than the global properties. With the same global properties, networks may have very different synchronizability. In this paper, we numerically studied, through the spectral properties, the synchronizability of ensembles of networks with prescribed statistical properties. Given a degree sequence, it is found that the eigenvalues and eigenratios characterizing network synchronizability have well-defined distributions, and statistically, the networks with extremely poor synchronizability are rare. Moreover, we compared the synchronizability of three network ensembles that have the same nodes and average degree. Our work reveals that the synchronizability of a network can be significantly affected by the local pattern of connections, and the homogeneity of degree can greatly enhance network synchronizability for networks of a random nature.
研究表明,网络的同步性由局部结构而非全局属性决定。在具有相同全局属性的情况下,网络可能具有非常不同的同步性。在本文中,我们通过频谱特性对具有规定统计特性的网络集合的同步性进行了数值研究。给定一个度序列,发现表征网络同步性的特征值和特征比具有明确的分布,并且从统计学角度来看,同步性极差的网络很少见。此外,我们比较了具有相同节点数和平均度的三个网络集合的同步性。我们的工作表明,网络的同步性会受到局部连接模式的显著影响,并且度的同质性可以极大地增强随机性质网络的同步性。