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Modeling worm propagation in the advanced metering infrastructure

机译:在高级计量基础架构中对蠕虫传播进行建模

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A computer worm is malicious software that can spread rapidly between interconnected devices and perform malicious actions. In an Advanced Metering Infrastructure (AMI), smart meters may communicate in an ad-hoc fashion to perform many functionalities like remote metering and demand response. However, the AMI is susceptible to cyber-physical threats caused by malware like worms. The speed at which worms propagate in the AMI affects the physical consequences of cyber attacks. In this paper, worm propagation in the AMI is simulated and a probabilistic model is derived. This model can be used to estimate the time required to infect N meters in the AMI and accordingly predict possible physical consequences.
机译:计算机蠕虫是可以在互连的设备之间快速传播并执行恶意操作的恶意软件。在高级计量基础架构(AMI)中,智能电表可以以临时方式进行通信,以执行许多功能,例如远程计量和需求响应。但是,AMI易受蠕虫等恶意软件引起的网络物理威胁的影响。蠕虫在AMI中传播的速度会影响网络攻击的物理后果。本文对蠕虫在AMI中的传播进行了仿真,并推导了概率模型。该模型可用于估计在AMI中感染N米所需的时间,并因此预测可能的物理后果。

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