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On Secrecy Sum-Rate of Artificial-Noise-Aided Multi-user Visible Light Communication Systems

机译:关于人工噪声辅助多用户可见光通信系统的保密和速率

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Recently, the physical layer security (PLS) is becoming an important research area for visible light communication (VLC) systems. In this paper, the secrecy rate performance is investigated for an indoor multi-user visible light communication (VLC) system using artificial noise (AN). In the considered model, all users simultaneously communicate with the legitimate receiver under wiretap channels. The legitimate receiver uses the minimum mean squared error (MMSE) equalizer to detect the received signals. Both lower bound and upper bound of the secrecy rate are obtained for the case that users’ signals are uniformly distributed. Simulation results verify the theoretical findings and show the system secrecy rate performance for various positions of illegal eavesdropper.
机译:最近,物理层安全性(PLS)正在成为可见光通信(VLC)系统的重要研究区域。 在本文中,研究了使用人造噪声(A)的室内多用户可见光通信(VLC)系统的保密率性能。 在被考虑的模型中,所有用户在窃听信道下同时与合法接收器通信。 合法接收器使用最小均方误差(MMSE)均衡器来检测接收的信号。 对于用户信号均匀分布的情况,获得了保密率的下限和上限。 仿真结果验证了理论调查结果,并显示了非法窃听者各种职位的系统保密率表现。

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