窃听或干扰:毫米波自组织网络中的窃听攻击策略

Yuanyu Zhang, Ji He, Qianyue Qu, Zhiwei Zhang
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引用次数: 1

摘要

毫米波(mmWave)通信由于传输距离短、发射天线方向性强,很难被窃听,这意味着在毫米波网络中,窃听不是窃听者的最佳攻击策略。然而,窃听者可以通过机会主义地在窃听攻击和其他攻击之间切换来最大化他们的收益,从而导致更有趣和更危险的攻击。本文首次研究了毫米波自组织网络中这种选择性窃听攻击策略,即窃听攻击与另一种代表性攻击(干扰)之间的选择。我们首先提出了两种攻击策略,即随机攻击(Random attack, RA)和基于距离的选择性攻击(Selective attack, SA-D)。随机攻击是指窃听者独立地、随机地以共同的概率选择攻击模式;然后,我们使用随机几何工具对两种策略下网络的保密传输容量(STC)进行理论建模。最后,我们提供了大量的数值结果来说明攻击参数对所提出策略下网络STC性能的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Wiretapping or Jamming: On Eavesdropper Attacking Strategy in mmWave Ad Hoc Networks
Millimeter-meter (mmWave) communication is difficult to wiretap due to the short transmission range and highly directional transmitting antennas, meaning that wiretapping is not the best attacking strategy for eavesdroppers in mmWave networks. However, eavesdroppers can maximize their payoffs by opportunistically switching between the wiretapping attack and other attacks, leading to a more interesting and hazardous attack. This paper, for the first time, investigates such selective eavesdropper attacking strategies, i.e., the selection between the wiretapping attack and another representative attack (jamming), in mmWave ad hoc networks. We first propose two attacking strategies, i.e., Random Attacking (RA), where eavesdroppers independently and randomly select their attack patterns with a common probability, and Selective Attacking based on Distances (SA-D), where each eavesdropper independently conducts the selection based on its smallest distances to transmitters and receivers, respectively. Using tools from stochastic geometry, we then perform theoretical modelling on the secrecy transmission capacity (STC) of the network under both strategies. Finally, we provide extensive numerical results to illustrate the impacts of attacking parameters on the network STC performance under the proposed strategies.
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