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The combined impact of external computers and network topology on the spread of computer viruses

机译:外部计算机和网络拓扑对计算机病毒传播的综合影响

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This paper aims to study the combined impact of external computers and network topology on the spread of computer viruses over the Internet. By assuming that the network underlying a recently proposed model capturing virus spreading behaviour under the influence of external computers follows a power-law degree distribution, a new virus epidemic model is proposed. A comprehensive study of the model shows the global stability of the virus-free equilibrium or the global attractivity of the viral equilibrium, depending on the basic reproduction number R-0. Next, the impacts of different model parameters on R-0 are analysed. In particular, it is found that (a) higher network heterogeneity benefits virus spreading, (b) higher-degree nodes are more susceptible to infections than lower-degree nodes, and (c) a lower rate at which external computers enter the Internet could restrain virus spreading. On this basis, some practical measures of inhibiting virus diffusion are suggested.
机译:本文旨在研究外部计算机和网络拓扑对计算机病毒在Internet上传播的综合影响。通过假设最近提出的捕获外部计算机影响下的病毒传播行为的模型的网络遵循幂律度分布,提出了一种新的病毒流行模型。对模型的全面研究表明,取决于基本繁殖数R-0,无病毒平衡的整体稳定性或病毒平衡的整体吸引力。接下来,分析了不同模型参数对R-0的影响。特别是,发现(a)较高的网络异构性有利于病毒传播;(b)较高等级的节点比较低等级的节点更容易受到感染;(c)较低的外部计算机进入Internet的速度可能抑制病毒传播。在此基础上,提出了一些抑制病毒扩散的实用措施。

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