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Channel-based spoofing detection in frequency-selective rayleigh channels

机译:选频瑞利信道中基于信道的欺骗检测

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摘要

The radio channel response decorrelates rapidly as the transmitter changes location in an environment with rich scatterers and reflectors. Based on this fact, a channel-based authentication scheme was previously proposed to discriminate between transmitters at different locations, and thus to detect spoofing attacks in wireless networks. In this paper, we study its application in frequency-selective Rayleigh channels, considering channel time variations due to environmental changes and terminal mobility, as well as the channel estimation errors due to the interference from other radios. We propose a generalized likelihood ratio test (GLRT) that is optimal but computationally cumbersome, and a simplified version that requires no a priori knowledge of channel parameters and is therefore more practical. We verify the efficacy of the channel-based spoofing detectors via numerical analysis, showing how performance is improved by using multiple antennas, higher transmit power, and wider system bandwidth. We show that, under a wide variety of practical conditions, spoofing can be detected with better than 90% probability while keeping the probability of falsely rejecting valid transmissions below 10%.
机译:当发射器在具有丰富散射体和反射器的环境中更改位置时,无线电信道响应会迅速去相关。基于这一事实,先前提出了一种基于信道的身份验证方案,以区分不同位置的发射机,从而检测无线网络中的欺骗攻击。在本文中,我们研究了其在频率选择瑞利信道中的应用,同时考虑了由于环境变化和终端移动性而引起的信道时间变化,以及由于其他无线电干扰而引起的信道估计误差。我们提出了一种最佳的广义似然比测试(GLRT),但计算繁琐,而简化版本则不需要先验的信道参数知识,因此更加实用。我们通过数值分析验证了基于信道的欺骗检测器的功效,表明了如何通过使用多个天线,更高的发射功率和更宽的系统带宽来提高性能。我们表明,在各种各样的实际条件下,可以以高于90%的概率检测到欺骗,同时将错误拒绝有效传输的概率保持在10%以下。

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