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Full-Duplex Decode-and-Forward Relaying: Secrecy Rates and Optimal Power Allocation

机译:全双工解码转发中继:保密率和最佳功率分配

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摘要

This paper investigates the secrecy rates and optimal power allocation schemes of a decode-and-forward (DF) wiretap relay channel where a relay operates in a full-duplex (FD) mode. A practical self-interference model is adopted to take into account the effect of residual self-interference. At first, we demonstrate that while the optimal power allocation schemes between the source and the relay are non-convex, closed-form solutions can still be established under different power constraints. An asymptotic behavior of the solutions is then provided to shed important insights on the derived power allocation schemes. Specifically, by using the method of dominant balance, we show that the relay should use full power when its power budget is sufficiently small as compared to power budget at the source. Otherwise, the optimal power consumed at the relay approaches a constant to effectively handle the residual self-interference. The analysis is also helpful to demonstrate that the secrecy capacity of the considered full-duplex relay system is twice as much as that of the half-duplex system. In addition, numerical results reveal that DF relaying provides significantly higher secrecy rate over Amplify-and-Forward (AF) relaying.
机译:本文研究了中继以全双工(FD)模式工作的解码转发(DF)窃听中继信道的保密率和最佳功率分配方案。考虑到残余自我干扰的影响,采用了一种实用的自我干扰模型。首先,我们证明了尽管源与继电器之间的最佳功率分配方案是非凸的,但仍然可以在不同的功率约束下建立闭合形式的解决方案。然后提供解决方案的渐近行为,以得出关于派生功率分配方案的重要见解。具体而言,通过使用优势平衡法,我们表明,与功率源处的功率预算相比,继电器应在其功率预算足够小时使用全功率。否则,继电器上消耗的最佳功率接近一个常数,以有效处理残余的自干扰。该分析还有助于证明所考虑的全双工中继系统的保密能力是半双工系统的保密能力的两倍。此外,数值结果表明,与中继转发(AF)中继相比,DF中继提供了更​​高的保密率。

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