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Utility of Beamforming Strategies for Secrecy in Multiuser MIMO Wiretap Channels

机译:多用户MIMO窃听通道中用于保密的波束成形策略的实用性

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This paper examines linear beamforming methods for secure communications in a multiuser wiretap channel with a single transmitter, multiple legitimate receivers, and a single eavesdropper, where all nodes are equipped with multiple antennas. No information regarding the eavesdropper is presumed at the transmitter, and we examine both the broadcast MIMO downlink with independent information, and the multicast MIMO downlink with common information for all legitimate receivers. In both cases the information signal is transmitted with just enough power to guarantee a certain SINK at the desired receivers, while the remainder of the power is used to broadcast artificial noise. The artificial interference selectively degrades the passive eavesdropper's signal while remaining orthogonal to the desired receivers. We analyze the confidentiality provided by zero-forcing and optimal minimum-power beamforming designs for the broadcast channel, and optimal minimum-MSE beamformers for the multicast channel. Numerical simulations for the relative SINR and BER performance of the eavesdropper demonstrate the effectiveness of the proposed physical-layer security schemes.
机译:本文介绍了具有单个发射器,多个合法接收器和单个窃听器的多用户丝网通道中的线性波束形成方法,以及单个节点配备多个天线。没有关于窃听器的信息被假定在发射机上,我们将使用独立信息检查广播MIMO下行链路,以及多播MIMO下行链路,其中包含所有合法接收器的公共信息。在这两种情况下,只需足够的电力传输信息信号以保证所需接收器处的某个宿,而电源的其余部分用于广播人工噪声。人工干扰选择性地降解被动窃听器的信号,同时剩下与所需的接收器正交。我们分析了零强制和最佳最小功率波束成形设计为广播信道提供的机密性,以及多播信道的最佳最小MSE波束形成器。窃听者的相对SINR和BER性能的数值模拟证明了所提出的物理层安全方案的有效性。

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