Chavez M, Hwang D-U, Martinerie J, Boccaletti S
LENA-CNRS UPR-640-Hôpital de la Salpêtrière, 47, Boulevard de l'Hôpital, 75651 Paris Cedex 13, France.
Phys Rev E Stat Nonlin Soft Matter Phys. 2006 Dec;74(6 Pt 2):066107. doi: 10.1103/PhysRevE.74.066107. Epub 2006 Dec 14.
Real networks often consist of local units interacting with each other by means of heterogeneous connections. In many cases, furthermore, such networks feature degree mixing properties, i.e., the tendency of nodes with high degree (with low degree) to connect with connectivity peers (with highly connected nodes). Such degree-degree correlations may have an important influence in the spreading of information or infectious agents on a network. We explore the role played by these correlations for the synchronization of networks of coupled dynamical systems. Using a stochastic optimization technique, we find that the value of degree mixing providing optimal conditions for synchronization depends on the weighted coupling scheme. We also show that a minimization of the assortative coefficient may induce a strong destabilization of the synchronous state. We illustrate our findings for weighted networks with scale free and random topologies.
真实网络通常由通过异构连接相互作用的局部单元组成。此外,在许多情况下,此类网络具有度混合特性,即高度(低度)节点与连接性对等节点(高度连接节点)连接的趋势。这种度-度相关性可能对网络上信息或传染因子的传播产生重要影响。我们探究了这些相关性在耦合动力系统网络同步中所起的作用。使用一种随机优化技术,我们发现为同步提供最优条件的度混合值取决于加权耦合方案。我们还表明, assortative 系数的最小化可能会导致同步状态的强烈失稳。我们用具有无标度和随机拓扑的加权网络来说明我们的发现。