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Defining Spatial Secrecy Outage Probability for Exposure Region-Based Beamforming

机译:定义基于曝光区域的波束成形的空间保密中断概率

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With the increasing number of antennae in base stations, there is considerable interest in using beamforming to improve physical layer security, by creating an “exposure region” that enhances the received signal quality for a legitimate user and reduces the possibility of leaking information to a randomly located passive eavesdropper. This paper formalizes this concept by proposing a novel definition for the security level of such a legitimate transmission, called the spatial secrecy outage probability (SSOP). By performing a theoretical and numerical analysis, it is shown how the antenna array parameters can affect the SSOP and its analytic upper bound. While this approach may be applied to any array type and any fading channel model, it is shown here how the security performance of a uniform linear array varies in a Rician fading channel by examining the analytic SSOP upper bound.
机译:随着基站中天线数量的增加,通过创建“暴露区域”来提高合法用户的接收信号质量并减少随机泄漏信息的可能性,使用波束成形来提高物理层安全性引起了极大的兴趣。位于被动式窃听器中。本文通过为这种合法传输的安全级别提出一种新颖的定义,即空间保密中断概率(SSOP),从而使这一概念正式化。通过进行理论和数值分析,显示了天线阵列参数如何影响SSOP及其解析上限。尽管此方法可应用于任何阵列类型和任何衰落信道模型,但此处通过检查解析的SSOP上限,显示了均匀线性阵列在Rician衰落信道中的安全性能如何变化。

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