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Detection of Jamming Attack in Non-Coherent Massive SIMO Systems

机译:非相干大规模SIMO系统中的干扰攻击检测

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In recent studies, a simple non-coherent communication scheme based on energy detection is proposed in massive single-input multiple-output (SIMO) systems. Before data transmission, the transmitter sends pilots to the receiver for the purpose of estimating the channel statistics. However, this training phase unintentionally provides opportunity for a malicious jammer to attack legitimate communication. In order to secure the legitimate communication, this paper proposes a jamming detection method in non-coherent SIMO systems, in which the information of channel statistics is not required. First, the transmitter sends pilots to the receiver, then the receiver sends the conjugate of its received signal (which may contain jammer signal) back to the transmitter, where the final decision on jamming detection is made. According to the likelihood ratio test principle, two detectors based on variance and standard variance normalization are proposed. The performance analysis indicates that these two detectors are of similar detection performance but of different complexity. Furthermore, it is revealed that the probability of detection initially grows with the number of receive antennas but converges quickly then, whereas the channel statistics from the jammer to the receiver always greatly influences the performance. Finally, the numerical simulations are carried out to validate the proposed detection method.
机译:在最近的研究中,在大规模单输入多输出(SIMO)系统中提出了一种基于能量检测的简单非相干通信方案。在数据传输之前,发送器向接收器发送导频,以估计信道统计信息。但是,此培训阶段无意中为恶意干扰机提供了攻击合法通信的机会。为了保证合法通信的安全,本文提出了一种非相干SIMO系统中的干扰检测方法,该方法不需要信道统计信息。首先,发送器将导频发送到接收器,然后接收器将其接收信号(可能包含干扰信号)的共轭信号发送回发送器,在此做出有关干扰检测的最终决定。根据似然比检验原理,提出了两种基于方差和标准方差归一化的检测器。性能分析表明,这两个检测器具有相似的检测性能,但复杂度不同。此外,揭示了检测的概率最初随接收天线的数量而增加,但随后迅速收敛,而从干扰器到接收器的信道统计信息始终极大地影响性能。最后,进行了数值模拟以验证所提出的检测方法。

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