Efficiency and Detectability of Random Reactive Jamming in Wireless Networks

Ni An, S. Weber
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引用次数: 4

Abstract

A natural basis for the detection of a wireless random reactive jammer (RRJ) is the perceived violation by the detector (typically located at the access point (AP)) of the carrier sensing protocol underpinning many wireless random access protocols (e.g., WiFi). Specifically, when the wireless medium is perceived by a station to be busy, a carrier sensing compliant station will avoid transmission while a RRJ station will often initiate transmission. However, hidden terminals, i.e., activity detected by the AP but not by the sensing station, complicate the use of carrier sensing as the basis for RRJ detection since they provide plausible deniability to a station suspected of being an RRJ. The RRJ has the dual objectives of avoiding detection and effectively disrupting communication, but there is an inherent performance tradeoff between these two objectives. In this paper we capture the behavior of both the RRJ and the compliant stations via a parsimonious Markov chain model, and pose the detection problem using the framework of Markov chain hypothesis testing. Our analysis yields the receiver operating characteristic (ROC) of the detector, and the optimized behavior of the RRJ. While there has been extensive work in the literature on jamming detection, our innovation lies in leveraging carrier sensing as a natural and effective basis for detection.
无线网络中随机无功干扰的有效性和可检测性
检测无线随机反应干扰器(RRJ)的自然基础是探测器(通常位于接入点(AP))感知到违反支撑许多无线随机接入协议(例如WiFi)的载波传感协议。具体来说,当无线介质被站感知为繁忙时,符合载波传感的站将避免传输,而RRJ站通常会发起传输。然而,隐藏的终端,即AP检测到但感知站未检测到的活动,使载波感知作为RRJ检测基础的使用复杂化,因为它们为怀疑是RRJ的站点提供了合理的否认。RRJ具有避免检测和有效中断通信的双重目标,但是在这两个目标之间存在固有的性能权衡。本文通过简化的马尔可夫链模型捕获了RRJ和顺从站的行为,并利用马尔可夫链假设检验的框架提出了检测问题。我们的分析得出了探测器的接收机工作特性(ROC),以及RRJ的优化行为。虽然在干扰检测的文献中已经有大量的工作,但我们的创新在于利用载波传感作为检测的自然和有效的基础。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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