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A new scheme to improve the secrecy throughput under the constraints of secrecy outage probability and average transmit power

机译:一种新的方案,以提高保密性中断概率和平均传输功率的限制下的保密吞吐量

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摘要

The issue of physical layer security for the wireless communication with slow fading is addressed in this paper, and the secrecy outage performance is concerned. The system is modeled as a wiretap channel, and each of the transmitter and receivers is equipped with a single antenna. The channel state information (CSI) about the channel from the transmitter to the legitimate receiver (the main channel) is assumed to be perfectly known by the transmitter and the receivers, while the transmitter does not know the CSI about the channel from the transmitter to the eavesdropper (the eavesdropper's channel) but its probability density function (PDF). Differing from the fixed secrecy rate scheme and the on/off scheme in the literature, this paper adaptively chooses the secrecy rate. The secrecy rate for each value of the main channel gain is determined by the required secrecy outage probability and the PDF of the eavesdropper's channel, and the secrecy throughput is maximized under the constraint of the transmit power for the required secrecy outage probability. The quasi-static Rayleigh fading channel is used to compare our scheme with the two existing schemes, and simulation results show that our scheme outperforms them when small secrecy outage probabilities are required.
机译:本文解决了与慢衰落的无线通信的物理层安全问题,并且涉及保密性中断性能。该系统被建模为窃听通道,并且每个发射器和接收器配备有单个天线。关于从发射机到合法接收器的信道状态信息(CSI)被假定发射机和接收器完全已知,而发射机不知道来自发射机的信道的CSI窃听者(窃听者的通道)但其概率密度函数(PDF)。与文献中的固定保密率方案和开/ OFF方案不同,本文自适应地选择了保密率。主频道增益的每个值的保密率由所需的保密性中断概率和窃听者的通道的PDF确定,并且保密吞吐量在发射功率的约束下最大化,以获得所需的保密性中断概率。准静态瑞利衰落通道用于将我们的方案与两个现有方案进行比较,并且仿真结果表明,当需要小保密中的中断概率时,我们的方案表明了它们的表现。

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