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A Modified SI Epidemic Model for Combating Virus Spread in Wireless Sensor Networks

机译:改进的SI流行病模型,用于抵制无线传感器网络中的病毒传播

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We study the dynamics of virus spread in wireless sensor networks (WSNs). We first analyze the susceptible-infective (SI) epidemic model for WSNs. In the SI model, once a sensor node is attacked by a virus, the infective node then, using normal communications, spreads the virus to its neighboring nodes, which further spread the virus to their neighbors, the process continues until the whole network fails. To combat this drawback, we propose a modified SI model by leveraging the sleep mode of WSNs to perform system maintenance. The modified SI model can improve the network anti-virus capability and flexibly adapt to different types of virus, without causing any additional hardware effort and signaling overhead. We derive the explicit analytical solutions for the modified SI model, which can capture both the spatial and temporal dynamics of the virus spread process. Extensive numerical results are presented to validate our analysis. The proposed model and analysis method are expected to be used for analysis and design of information (including virus) propagation mechanisms in distributed wireless or computer networks.
机译:我们研究病毒在无线传感器网络(WSNs)中传播的动态。我们首先分析WSN的易感性(SI)流行模型。在SI模型中,一旦传感器节点受到病毒攻击,感染节点便会通过正常通信将病毒传播到其相邻节点,再将病毒传播到其相邻节点,此过程将持续到整个网络出现故障为止。为了克服这个缺点,我们提出了一种改进的SI模型,该模型通过利用WSN的睡眠模式来进行系统维护。改进的SI模型可以提高网络的防病毒能力,并灵活地适应不同类型的病毒,而不会导致任何额外的硬件工作量和信令开销。我们得出了改进的SI模型的显式分析解决方案,该模型可以捕获病毒传播过程的时空动态。大量的数值结果被提出来验证我们的分析。该模型和分析方法有望用于分布式无线或计算机网络中信息(包括病毒)传播机制的分析和设计。

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