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Exploiting large-scale MIMO techniques for physical layer security with imperfect channel state information

机译:利用不完善的信道状态信息开发用于物理层安全性的大规模MIMO技术

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In this paper, we study the problem of physical layer security in large-scale multiple input multiple output (LS-MIMO) systems. The large number of antenna elements in LS-MIMO system is exploited to enhance transmission security and improve system performance, especially when the eavesdropper is closer to the information source and has more antennas than the legitimate user. However, in practical systems, the problem becomes challenging because the eavesdropper channel state information (CSI) is usually unavailable without cooperation and the legitimate CSI may be imperfect due to channel estimation error. In this paper, we first analyze the performance of physical layer security without eavesdropper CSI and with imperfect legitimate CSI, and then propose an energy-efficient power allocation scheme to meet the demand for wireless security and quality of service (QoS) simultaneously. Finally, numerical results validate the effectiveness of the proposed scheme.
机译:在本文中,我们研究了大规模多输入多输出(LS-MIMO)系统中的物理层安全性问题。 LS-MIMO系统中大量天线元件被用来增强传输安全性并改善系统性能,尤其是在窃听者距离信息源更近且天线多于合法用户的情况下。但是,在实际系统中,该问题变得具有挑战性,因为窃听者的信道状态信息(CSI)通常在没有合作的情况下不可用,并且合法的CSI由于信道估计错误而可能不完善。在本文中,我们首先分析了没有窃听CSI和不完善的合法CSI的物理层安全性的性能,然后提出了一种节能的功率分配方案,以同时满足对无线安全性和服务质量(QoS)的需求。最后,数值结果验证了所提方案的有效性。

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