通过方向调制安全M-PSK通信

A. Kalantari, Mojtaba Soltanalian, S. Maleki, S. Chatzinotas, B. Ottersten
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引用次数: 21

摘要

在这项工作中,设计了一种基于方向调制的技术,以增强采用M-PSK调制传输信息的多天线无线通信系统的安全性。定向调制方法通过使接收机接收信号的相位与预定的M-PSK符号相匹配的方式操纵阵列波束来操作。由于合法接收者和窃听者的信道不同,窃听者接收到的信号通常包含与实际符号不同的相位分量。因此,采用定向调制的收发器可以在不知道窃听者信道的情况下对窃听者施加较高的符号误码率。最佳方向调制波束形成器的设计是在满足合法接收机的每个天线的特定相位和最小信号幅度的情况下,使消耗的功率最小。仿真结果表明,与传统的基准方案(即在发射机处强制零预编码)相比,定向调制在窃听端的误码率要高得多。
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Secure M-PSK communication via directional modulation
In this work, a directional modulation-based technique is devised to enhance the security of a multi-antenna wireless communication system employing M-PSK modulation to convey information. The directional modulation method operates by steering the array beam in such a way that the phase of the received signal at the receiver matches that of the intended M-PSK symbol. Due to the difference between the channels of the legitimate receiver and the eavesdropper, the signals received by the eavesdropper generally encompass a phase component different than the actual symbols. As a result, the transceiver which employs directional modulation can impose a high symbol error rate on the eavesdropper without requiring to know the eavesdropper's channel. The optimal directional modulation beamformer is designed to minimize the consumed power subject to satisfying a specific resulting phase and minimal signal amplitude at each antenna of the legitimate receiver. The simulation results show that the directional modulation results in a much higher symbol error rate at the eavesdropper compared to the conventional benchmark scheme, i.e., zero-forcing precoding at the transmitter.
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