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Practical Evaluation of Passive COTS Eavesdropping in 802.11b/ac WLAN

机译:802.11b / n / ac WLAN中无源COTS窃听的实用评估

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In this work, we compare the performance of a passive eavesdropper in 802.11b/ac WLAN networks. In particular, we investigate the downlink of 802.11 networks in infrastructure mode (e.g. from an access point to a terminal) using Commercial-Of-The-Shelf (COTS) devices. Recent 802.11n/ac amendments introduced several physical and link layer features, such as MIMO, spatial diversity, and frame aggregation, to increase the throughput and the capacity of the channel. Several information theoretical studies state that some of those 802.11n/ac features (e. g. beamforming) should provide a degradation of performance for a passive eavesdropper. However, the real impact of those features has not yet been analyzed in a practical context and experimentally evaluated. We present a theoretical discussion and a statistical analysis (using path loss models) to estimate the effects of such features on a passive eavesdropper in 802.11n/ac, using 802.11b as a baseline. We use Signal-to-Noise-Ratio (SNR) and Packet-Error-Rate (PER) as our main metrics. We compute lower and upper bounds for the expected SNR difference between 802.11b and 802.11n/ac using high-level wireless channel characteristics. We show that the PER in 802.11n/ac increases up to 98% (compared to 802.11b) at a distance of 20 m between the sender and the eavesdropper. To obtain a PER of 0.5 in 802.11n/ac, the attacker's maximal distance is reduced by up to 129.5 m compared to 802.11b. We perform an extensive set of experiments, using COTS devices in an indoor office environment, to verify our theoretical estimations. The experimental results validate our predicted effects and show that every amendment add extra resiliency against passive COTS eavesdropping.
机译:在这项工作中,我们比较了802.11b / n / ac WLAN网络中无源窃听者的性能。特别是,我们使用现成的商用(COTS)设备研究了基础架构模式(例如,从接入点到终端)中802.11网络的下行链路。最近的802.11n / ac修订引入了一些物理和链路层功能,例如MIMO,空间分集和帧聚合,以提高吞吐量和信道容量。几项信息理论研究表明,其中一些802.11n / ac功能(例如,波束成形)应使无源窃听者的性能下降。但是,这些功能的实际影响尚未在实际环境中进行分析和实验评估。我们提出了理论讨论和统计分析(使用路径损耗模型),以802.11b为基准来估计此类功能对802.11n / ac中的无源窃听者的影响。我们使用信噪比(SNR)和误码率(PER)作为主要指标。我们使用高级无线信道特征来计算802.11b与802.11n / ac之间预期SNR差异的上限和下限。我们显示,在发送者和窃听者之间的距离为20 m时,802.11n / ac中的PER最高可提高98%(与802.11b相比)。为了在802.11n / ac中获得0.5的PER,与802.11b相比,攻击者的最大距离减少了129.5 m。我们在室内办公环境中使用COTS设备进行了广泛的实验,以验证我们的理论估计。实验结果验证了我们的预期效果,并表明每个修正都增加了针对被动COTS窃听的额外弹性。

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