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Modeling the propagation of topology-aware P2P worms considering temporal parameters - Springer

机译:考虑时间参数的可感知拓扑的P2P蠕虫的传播建模-Springer

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The propagation of topology-aware peer-to-peer (P2P) worms in the Internet is a serious threat due to their ability to evade traditional detection mechanisms by means of avoiding revealing any abnormal behavior. Recent increase in the popularity and the usage of P2P systems and applications is exponentially increasing the risk of this threat. The existing models of P2P worms’ propagation consider network topology as an important parameter affecting the propagation process. However, a drawback of these models is that they ignore the infection time lag (i.e. the time taken by worm to infect a host). In this paper, we extend the four-factor worm propagation model and propose timed four-factor model to consider both the network topology and the infection time lag. We have also developed an agent-based simulation model to conduct simulative experiments based on the proposed model. The results of our experiments show that the infection time lag has considerable impact on the attack performance of topology-aware P2P worms. The performance of different peer immunization strategies considering the launch time of immunization strategies and other effective parameters have also been investigated in this paper.
机译:拓扑感知对等(P2P)蠕虫在Internet上的传播是一个严重的威胁,这是因为它们能够通过避免揭示任何异常行为来规避传统的检测机制。最近对P2P系统和应用程序的普及和使用的增加正成倍增加这种威胁的风险。现有的P2P蠕虫传播模型将网络拓扑视为影响传播过程的重要参数。但是,这些模型的缺点是它们忽略了感染时间的延迟(即蠕虫感染宿主所花费的时间)。在本文中,我们扩展了四因素蠕虫传播模型,并提出了考虑网络拓扑结构和感染时间滞后的定时四因素模型。我们还开发了基于代理的仿真模型,可以基于提出的模型进行仿真实验。我们的实验结果表明,感染时间的滞后对拓扑感知的P2P蠕虫的攻击性能具有相当大的影响。本文还研究了考虑免疫策略启动时间和其他有效参数的不同同伴免疫策略的性能。

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