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Discrete Input Signaling for Secure MISO VLC Systems with Randomly Located Eavesdroppers

机译:具有随机定位窃听器的安全MISO VLC系统的离散输入信令

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We study in this paper the secrecy performance of the multiple-input single-output (MISO) visible light communication (VLC) channel in the presence of randomly located eavesdroppers. We consider a system model comprising a transmitter, equipped with multiple fixtures of LEDs, one legitimate receiver equipped with a single photo-diode (PD) and a group of randomly located (and colluding) eavesdroppers, each equipped with a single PD. We derive a closed-form expression for the average achievable secrecy rate as a function of the beamforming vector, the input distribution, and the location density of the eavesdroppers using stochastic geometry. We then investigate the optimal beamformer that maximizes the average achievable secrecy rate. We corroborate the analytical results through Monte Carlo simulations and we demonstrate substantial improvements provided by the proposed scheme over existing ones.
机译:我们在本文中研究了多输入单输出(MISO)可见光通信(VLC)通道的保密性能在随机定位的窃听器中。我们考虑一个系统模型,该系统模型包括配备有多个LED灯具的发射器,配备有单个光电二极管(PD)的合法接收器和一组随机定位(和拼写)窃听器,每个窃听者都配备有单个PD。我们使用随机几何形状的波束形成矢量,输入分布和窃听器的位置密度的函数来实现闭合形式的表达式。然后,我们调查最佳波束形成器,以最大化平均可实现的保密率。我们通过蒙特卡罗模拟证实了分析结果,我们证明了所拟议的计划提供的大量改进。

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