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Risk-based attack strategies for mobile ad hoc networks under probabilistic attack modeling framework

机译:概率攻击建模框架下的移动自组织网络基于风险的攻击策略

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摘要

In this paper, we introduce and design a modeling framework that allows for the study and analysis of attack propagation in mobile ad hoc networks. The choice of a statistical approach for the problem is motivated by the dynamic characteristics of the ad hoc topology and the stochastic nature of threat propagation. Based on this probabilistic modeling framework, we study the impact of topology and mobility in the propagation of software threats over ad hoc networks. We design topology control algorithms that indicate how to properly adjust an attacker's transmission radius, according to the measured topological characteristics and availability of its resources, in the process of infecting a network more effectively. Then based on these topology control algorithms we develop different attack strategies that may range from independent attacks to cooperative scenarios in order to increase the negative impact of an attack on the network. Our performance evaluation results demonstrate that the proposed topology control algorithms and respective attack strategies effectively balance the tradeoffs between the potential network damage and the attackers' lifetime, and as a result significantly outperform any other flat and threshold-based approaches.
机译:在本文中,我们介绍并设计了一个建模框架,该框架可用于研究和分析移动自组织网络中的攻击传播。针对该问题的统计方法的选择是由ad hoc拓扑的动态特性和威胁传播的随机性引起的。基于此概率建模框架,我们研究了拓扑和移动性对自组织网络上软件威胁传播的影响。我们设计了拓扑控制算法,该算法指示如何在更有效地感染网络的过程中根据测得的拓扑特征和其资源的可用性来适当调整攻击者的传输半径。然后,基于这些拓扑控制算法,我们开发不同的攻击策略,其范围可能从独立攻击到协作方案,以增加攻击对网络的负面影响。我们的性能评估结果表明,所提出的拓扑控制算法和相应的攻击策略有效地平衡了潜在的网络破坏与攻击者的生存时间之间的折衷,因此,其性能明显优于其他任何基于阈值的固定方法。

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