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Analysis of Secrecy Performance in Fading Multiple Access Wiretap Channel with SIC Receiver

机译:用SIC接收器逐渐消退多址WireTAP通道的保密性能分析

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Recently, a new paradigm of multiple access (MAC) along with one eavesdropper to achieve secrecy transmissions has been getting in focus. However, all existing work on such multiple access wiretap channel (MAC-WT) mainly concentrates on the secrecy performance of the system as a whole from an information theoretic perspective. In this work, we investigate the secrecy performance of a single transmitter in the quasi-static Rayleigh fading MAC-WT on basis of two decoding methods, zero-forcing (ZF) and minimum mean-square error (MMSE), jointly with successive interference cancellation (SIC). We evaluate the secrecy performance in three metrics: positive secrecy capacity probability, secrecy outage probability and effective secrecy throughput. The analytical and simulation results show that, 1) the SIC order has great impacts on the secrecy performance for both methods; 2) MMSE-SIC outperforms ZF-SIC, while the performance gap can be overcome via adjusting SIC order, or increasing SNR, or enhancing the spatial diversity gain; 3) in high SNR regime, the secrecy performance is only determined by the relative distance to eavesdropper over legitimate receiver rather than the SNR.
机译:最近,多次访问(Mac)的新范式以及一个窃听者来实现保密传输已经焦点。但是,在这种多址WIRETAP通道(MAC-WT)上的所有现有工作主要集中在信息理论视角下作为整个系统的保密性能。在这项工作中,我们在基于两个解码方法,零强制(ZF)和最小均方误差(MMSE)的基础上,调查单个发射机在准静态瑞利衰落MAC-WT中的保密性能,与连续干扰共同取消(SIC)。我们评估了三个度量的保密性能:积极的保密容量概率,保密性中断概率和有效的保密吞吐量。分析和仿真结果表明,1)SIC顺序对两种方法的保密性能产生了很大的影响; 2)MMSE-SIC优于ZF-SIC,虽然可以通过调整SIC顺序或增加SNR,或增强空间分集增益来克服性能间隙; 3)在高SNR制度中,秘密性能仅由窃听者的相对距离确定合法接收器而不是SNR。

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