相互依存的网络
分类
级联故障
稳健性(进化)
相互依存
计算机科学
复杂网络
拓扑(电路)
渗透(认知心理学)
学位分布
分布式计算
统计物理学
数学
物理
生物
电力系统
组合数学
基因
万维网
功率(物理)
神经科学
量子力学
生物化学
法学
政治学
作者
Di Zhou,H. Eugene Stanley,Gregorio D′Agostino,Antonio Scala
标识
DOI:10.1103/physreve.86.066103
摘要
It was recently recognized that interdependencies among different networks can play a crucial role in triggering cascading failures and hence system-wide disasters. A recent model shows how pairs of interdependent networks can exhibit an abrupt percolation transition as failures accumulate. We report on the effects of topology on failure propagation for a model system consisting of two interdependent networks. We find that the internal node correlations in each of the two interdependent networks significantly changes the critical density of failures that triggers the total disruption of the two-network system. Specifically, we find that the assortativity (i.e. the likelihood of nodes with similar degree to be connected) within a single network decreases the robustness of the entire system. The results of this study on the influence of assortativity may provide insights into ways of improving the robustness of network architecture, and thus enhances the level of protection of critical infrastructures.
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