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Analysis of the SIRP epidemic model with anti-worm patching

机译:具有蠕虫修补功能的SIRP流行病模型分析

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In this paper we analyse the effect of an anti-worm patching into a network inspired from human epidemiology. To achieve this we propose a new extended model of Susceptible-lnfected-Recovered model. In which we introduced a new compartment, named as 'Patched'. This is a compartment where nodes/computers are not prone to worm attacks owing to an anti-worm patch being installed in them. We call our model Susceptible-lnfected-Recovered-Patched model. We perform an exhaustive equilibrium analysis both analytically and numerically for the 'Worm' and 'Worm-free' scenarios. The model assumes that the anti-worm patch spreads like the worm does in the network. The equilibrium analysis illustrates how the population dynamics responds to different parameters involved in the model. We have also shown the effect of user vigilance in the model and observed that a more vigilant population of computer users is helpful to remove worm quickly from a network.
机译:在本文中,我们分析了将防蠕虫修补到受人类流行病学启发的网络中的效果。为了实现这一目标,我们提出了一种新的扩展模型,即易感感染恢复模型。我们在其中引入了一个名为“ Patched”的新隔层。这是一个由于节点/计算机中安装了反蠕虫补丁程序而使其不易于受到蠕虫攻击的隔离专区。我们称我们的模型为易感感染-恢复-修补模型。我们针对“蠕虫”和“无蠕虫”方案进行了详尽的平衡分析。该模型假定防蠕虫补丁的传播方式与蠕虫在网络中的传播方式相同。均衡分析说明了种群动态如何响应模型中涉及的不同参数。我们还在模型中显示了用户警惕性的效果,并观察到更多警惕的计算机用户有助于快速从网络中删除蠕虫。

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