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Stochastic behavior of random constant scanning worms

机译:随机恒定扫描蠕虫的随机行为

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This paper discusses modeling and simulation issues associated with the stochastic behavior of a special type of a computer worm called a random constant scanning (RCS) worm. Although these worms propagate by randomly scanning network addresses to find hosts that are susceptible to infection, traditional RCS worm models are fundamentally deterministic. A density-dependent Markov jump process model for RCS worms is presented and analyzed. Conditions are shown for when worm models can safely ignore some stochastic properties of RCS worm propagation. A computationally simple hybrid deterministic/stochastic model for the observed scanning behavior on a local network due to the global propagation of an RCS scanning worm is also presented and discussed.
机译:本文讨论了与一种称为随机常数扫描(RCS)蠕虫的特殊类型的计算机蠕虫的随机行为相关的建模和仿真问题。尽管这些蠕虫通过随机扫描网络地址进行传播以找到易于感染的主机,但是传统的RCS蠕虫模型从根本上是确定性的。提出并分析了RCS蠕虫的一种依赖于密度的马尔可夫跳跃过程模型。显示了蠕虫模型何时可以安全地忽略RCS蠕虫传播的某些随机属性的条件。由于RCS扫描蠕虫的全球传播,还针对本地网络上观察到的扫描行为,提供了一种计算简单的混合确定性/随机模型。

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