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Evolutionary game theoretic analysis of distributed denial of service attacks in a wireless network

机译:无线网络中分布式拒绝服务攻击的演化博弈论分析

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We consider a wireless network of M users connected to an access point in the presence of N jammers whose purpose is to deny or degrade the performance of the users by injecting interference. Using the achieved signal to inference plus noise ratio (SINR) as the performance metric, we study the dynamics of such a distributed denial of service attack (DDoA) by using Evolutionary Game Theory (EGT). Specifically, we consider a cooperative network model, where the M users (and N jammers) can collectively enhance their achieved SINR (degrade the user SINR). We model the strategic transmission decisions of the users (and the jammers) using simple random access techniques where the users (and jammers) decide to transmit or not with a transmission probability, taking into account their energy costs. Using the replicator dynamics (RD), we characterize the evolutionary stable strategies (ESS's) of the game and observe that the resulting transmission probabilities turn out to be either 0 or 1. Further, given a network (channel) setting, we show using a phase portrait of the replicator dynamics how the ESS strategies evolve for different cooperation levels of the users and jammers populations. We also provide insights into resulting ESS strategies as a function of the number of users and jammers, and their channel qualities.
机译:我们考虑存在N个干扰器的情况下,将M个用户连接到接入点的无线网络,其目的是通过注入干扰来拒绝或降低用户的性能。使用获得的信噪比加噪声比(SINR)作为性能指标,我们使用进化博弈论(EGT)研究了这种分布式拒绝服务攻击(DDoA)的动力学。具体来说,我们考虑一个协作网络模型,其中M个用户(和N个干扰者)可以共同增强其实现的SINR(降级用户SINR)。我们使用简单的随机访问技术对用户(和干扰者)的战略性传输决策进行建模,其中,用户(和干扰者)在考虑其能源成本的情况下决定是否以传输概率进行传输。使用复制器动力学(RD),我们描述了游戏的进化稳定策略(ESS),并观察到最终的传输概率变为0或1。此外,在给定网络(通道)设置的情况下,我们展示了复制器动态的阶段图,说明ESS策略如何针对用户和干扰者群体的不同协作级别而发展。我们还根据用户和干扰者的数量以及他们的信道质量,提供了对最终的ESS策略的见解。

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