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Effects of Dynamic Quarantine and Nonlinear Infection Rate in a Model for Computer Worms Propagation

机译:动态检疫和非线性感染率在计算机蠕虫繁殖模型中的影响

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We propose a new model for computer worms propagation, using dynamic quarantine and a nonlinear infection rate. The dynamic quarantine is based in epidemic disease control methods and in the principle 'assume guilty before proven inocent'. This means that the host is blocked whenever its behavior looks suspicious. After a short time, the quarantined computer is released. The nonlinear infection rate is used to capture the dynamics of overcrowded infectious networks and high viral loads. We simulate numerically the model for distinct values of the quarantine times. We observe that increasing the quarantine time decreases the number of infectious hosts in the network.
机译:我们向计算机蠕虫传播的新模型推荐,使用动态检疫和非线性感染率。动态检疫基础是基于流行病控制方法,原则上“在被证实的因子之前承担有罪”。这意味着每当其行为看起来都看起来时,主机被阻止。在短时间内,释放隔离的计算机。非线性感染率用于捕获过度拥挤的传染网络和高病毒载量的动态。我们在数值上模拟了隔离时间的不同值的模型。我们观察到,增加隔离时间会降低网络中的传染性主机的数量。

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