While the millimeter-wave (mmWave) communication is robust against the conventional wiretapping attack due to its short transmission range and directivity, this paper proposes a new opportunistic wiretapping and jamming (OWJ) attack model in mmWave wireless networks. With OWJ, an eavesdropper can opportunistically conduct wiretapping or jamming to initiate a more hazardous attack based on the instantaneous costs of wiretapping and jamming. We also provide three realizations of the OWJ attack, which are mainly determined by the cost models relevant to distance, path loss and received power, respectively. To understand the impact of the new attack on mmWave network security, we first develop novel approximation techniques to characterize the irregular distributions of wiretappers, jammers and interferers under three OWJ realizations. With the help of the results of node distributions, we then derive analytical expressions for the secrecy transmission capacity to depict the network security performance under OWJ. Finally, we provide extensive numerical results to illustrate the effect of OWJ and to demonstrate that the new attack can more significantly degrade the network security performance than the pure wiretapping or jamming attack.
翻译:虽然毫米波(mmWave)通信由于传输距离和直接性而对常规的窃听攻击具有很强的力度,但本文提议在毫米Wave无线网络中采用新的机会性窃听和干扰攻击模式。与Wave无线网络一起,窃听器可以利用机会性地进行窃听或干扰,根据窃听和干扰的瞬间成本发起更危险的攻击。我们还提供了对OWJ攻击的三种认识,这些认识主要取决于分别与距离、路径丢失和接收电力有关的成本模型。为了了解新攻击对MmmWave网络安全的影响,我们首先开发了新的近似技术,在Wave网络的三项认识下,对窃听器、干扰器和干扰器的不规则分布进行定性。在节点分布结果的帮助下,我们随后为描述OWJ下网络安全性表现的保密传输能力提供了分析表达方式。最后,我们提供了广泛的数字结果,以说明OWJ的影响,并表明新攻击能够比纯粹的窃听或干扰更加严重地削弱网络安全性。