An empirical fingerprint framework to detect Rogue Access Points

Bandar Alotaibi, K. Elleithy
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引用次数: 20

Abstract

The aim of this paper is to detect Rogue Access Points (RAPs) that clone some of the characteristics of nearby legitimate Access Points (APs). A new passive approach that takes advantage of the first frame that the RAP sends (i.e, Beacon Frame (BF)) when it is planted in the Wireless Local Area Network (WLAN) is proposed. We apply the proposed fingerprint to detect RAPs to evaluate the fingerprint effectiveness. The proposed framework examines every beacon frame size, and compares it with a threshold value. The technique is implemented on a commercially available Wireless Network Interface Controller (WNIC) to evaluate its accuracy. The detection algorithm achieves 100 percent accuracy to determine the RAPs in a lightly loaded traffic environment. The detection time can be taken in approximately 100 ms and is scanned in real-time setting. The robustness and the efficiency of the detection algorithm are examined in two different locations.
一个经验指纹框架,以检测流氓接入点
本文的目的是检测复制附近合法接入点(ap)的某些特征的流氓接入点(rap)。提出了一种新的被动方法,利用RAP在无线局域网(WLAN)中植入时发送的第一帧(即信标帧(BF))。我们将提出的指纹用于检测RAPs,以评估指纹的有效性。提出的框架检查每个信标帧大小,并将其与阈值进行比较。该技术在市售无线网络接口控制器(WNIC)上实现,以评估其准确性。该检测算法在轻负荷的流量环境下,确定rap的准确率达到100%。检测时间约为100毫秒,并在实时设置中进行扫描。在两个不同的位置检验了检测算法的鲁棒性和效率。
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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