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Moving Relays in Downlink Multiuser Networks - A Physical-Layer Security Perspective

机译:在下行链路多用户网络中移动中继-物理层安全性的观点

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Moving relay (MR) has been proved to be an effective technique to eliminate vehicle penetration loss (VPL) in vehicular communications. In this paper, the function of MR in a downlink multiuser network is investigated from the perspective of physical-layer security. Secure probability (SP), defined as the probability that the user inside a vehicle can receive downlink messages without any information leakage to the eavesdroppers outside of the vehicle, is considered as the performance metric. By comparing SP performance, MR aided dual-hop transmission is shown to outperform direct and fixed relay (FR) aided transmissions, particularly in high VPL region. Then, we propose two user scheduling schemes for the considered downlink multiuser network, which select the user with minimum eavesdropper information and maximum MR information respectively. Closed-form expressions of SPs for the proposed two scheduling schemes are derived. Experiment results show that the proposed scheduling schemes enhance SP performance compared with random scheduling. The scheduling scheme selecting the user with minimum eavesdropper information achieves higher SP than the one selecting the user with maximum MR information.
机译:运动继电器(MR)已被证明是消除车辆通信中车辆穿透损耗(VPL)的有效技术。本文从物理层安全性的角度研究了MR在下行多用户网络中的功能。安全概率(SP)被定义为性能指标,安全概率(SP)定义为车辆内部的用户可以接收下行链路消息而不会向车辆外部的窃听者泄漏任何信息的概率。通过比较SP性能,显示MR辅助双跳传输优于直接和固定中继(FR)辅助传输,特别是在高VPL区域。然后,针对所考虑的下行链路多用户网络,提出了两种用户调度方案,分别选择了具有最小窃听者信息和最大MR信息的用户。推导了针对所提出的两种调度方案的SP的闭式表达式。实验结果表明,与随机调度相比,该调度方案能够提高SP性能。与选择具有最大MR信息的用户的调度方案相比,选择具有最小窃听者信息的用户的调度方案实现了更高的SP。

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