On the Physical Layer Security of Multi-user Hybrid RF/VLC Networks

Jiajia Qiao, Xiang Zhao, Yu Sun
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引用次数: 1

Abstract

Recently, the hybrid radio frequency (RF)/ visible light communication (VLC) network has been widely studied due to the advantages of high data transmission and no interference between the two networks. Taking the physical layer security (PLS) into account, most work on hybrid RF/VLC network focused on single user. However, many practical scenarios require hybrid network to serve multiple users (MU). Thus, in this paper, we make a study on the PLS of MU hybrid RF/VLC network where the messages to each of the users must be kept confidential from the other and also from the external eavesdropper. To enhance the secrecy performance of the hybrid network, we propose a zero forcing (ZF) beamforming strategy to ensure that the information of each legitimate user can not be received by other users and the eavesdropper. A sum secrecy rate (SSR) optimization problem is formulated under the ZF constraint and the constraint of the power transmitted from the VLC and the RF access point. To reduce the complexity of the original problem, we decouple it into two successive sub-problems and solve them via convex optimization theory and matrix theory. Simulation results show that a positive SSR can always be achieved, and the SSR of the MU hybrid RF/VLC network is superior to that of the standalone RF and VLC networks.
多用户RF/VLC混合网络物理层安全研究
近年来,射频/可见光通信(VLC)混合网络由于具有传输速率高、互不干扰等优点而受到广泛的研究。考虑到物理层安全性,射频/VLC混合网络的大部分工作都集中在单用户上。然而,许多实际场景需要混合网络来服务多用户(MU)。因此,本文对MU混合RF/VLC网络的PLS进行了研究,其中每个用户的消息都必须对另一个用户保密,也必须对外部窃听者保密。为了提高混合网络的保密性能,我们提出了零强制(ZF)波束形成策略,以确保每个合法用户的信息不会被其他用户和窃听者接收。在ZF约束和VLC和射频接入点传输功率约束下,建立了一个总保密率优化问题。为了降低原问题的复杂性,我们将原问题解耦为两个连续的子问题,并利用凸优化理论和矩阵理论进行求解。仿真结果表明,MU混合RF/VLC网络的SSR总能达到正SSR,且其SSR优于单独RF/VLC网络。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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