High-Performance and Robust Strategy of Active Location Detection in WLAN

Siyu Zhan, Xufa Wang, Jianming Liao, Jieyan Liu, Yalan Ye
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Abstract

The development of wireless network technologies gives attackers the convenience to use advanced radio technologies to hide their positions in wireless networks. While location service is a hot research currently, there are few location strategies concentrate on locating an attacker equipped with advanced radio technologies. In order to locate the attackers and make a security wireless network environment, we present a localization strategy, named as Active Location Detection (ALD), to locate attackers, without depending on the true features of attackers’ signal. This process is robust against the attacks from these malicious users, using a finite horizon discrete Markov decision process (MDP). Furthermore, we qualitatively analyze the lower bound of ALD’s error rate. After our analysis, a common formula of the lower bound of ALD’s error rate is proved. Our simulations about ALD’s error rate demonstrate that ALD’s error rate is close to the lower bound of ALD’s error rate. As further noted, the theories about the lower bound of ALD’s error rate can also be applied to the range-free location systems.
无线局域网主动位置检测的高性能鲁棒策略
无线网络技术的发展为攻击者利用先进的无线电技术隐藏其在无线网络中的位置提供了便利。虽然定位服务是当前研究的热点,但很少有针对先进无线技术的攻击者定位的定位策略。为了对攻击者进行定位,构建安全的无线网络环境,我们提出了一种不依赖攻击者信号真实特征的定位策略——主动定位检测(ALD)。该过程使用有限视界离散马尔可夫决策过程(MDP),对这些恶意用户的攻击具有鲁棒性。此外,我们定性地分析了ALD的误差率下界。经过我们的分析,证明了ALD误差率下界的一个通用公式。我们对ALD的误差率进行了仿真,结果表明ALD的误差率接近于ALD误差率的下界。进一步指出,关于ALD误差率下界的理论也可以应用于无距离定位系统。
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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