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Dynamic spreading behavior of homogeneous and heterogeneous networks

机译:同构和异构网络的动态扩展行为

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The detailed investigation of the dynamic epidemic spreading on homogeneous and heterogeneous networks was carried out. After the analysis of the basic epidemic models, the susceptible-infected-susceptible (SIS) model on homogenous and heterogeneous networks is established, and the dynamical evolution of the density of the infected individuals in these two different kinds of networks is analyzed theoretically. It indicates that heterogeneous networks are easier to propagate for the epidemics and the leading spreading behavior is dictated by the exponential increasing in the initial outbreaks. Large-scale simulations display that the infection is much faster on heterogeneous networks than that on homogeneous ones. It means that the network topology can have a significant effect on the epidemics taking place on complex networks. Some containment strategies of epidemic outbreaks are presented according to the theoretical analyses and numerical simulations.
机译:对在同质和异质网络上传播的动态流行病进行了详细的研究。在对基本流行病模型进行分析之后,建立了均质和异质网络上的易感性-易感性(SIS)模型,并从理论上分析了这两种网络中被感染者密度的动态演变。这表明,对于流行病而言,异构网络更易于传播,并且主要爆发行为是由初始爆发的指数增长决定的。大规模仿真显示,异构网络上的感染比同类网络上的感染要快得多。这意味着网络拓扑可以对复杂网络上的流行病产生重大影响。根据理论分析和数值模拟,提出了一些流行病的控制策略。

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