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Partial-Duplex Amplify-and-Forward Relaying: Spectral Efficiency Analysis Under Self-Interference

机译:部分双工放大和前进中继:自干扰下的光谱效率分析

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We propose a novel mode of operation for amplify-and-forward relays in which the spectra of the relay input and output signals partially overlap. This partial-duplex relaying mode encompasses half- and full-duplex as particular cases. By viewing the partial-duplex relay as a bandwidth-preserving linear periodically time-varying system, a spectral efficiency analysis under self-interference is developed. In contrast with previous works, self-interference is regarded as a useful information-bearing component rather than simply assimilated to noise. This approach reveals that previous results regarding the impact of self-interference on (full-duplex) relay performance are overly pessimistic. Based on a frequency-domain interpretation of the effect of self-interference, a number of suboptimal decoding architectures at the destination node are also discussed. It is found that the partial-duplex relaying mode may provide an attractive tradeoff between spectral efficiency and receiver complexity.
机译:我们提出了一种新颖的操作模式,用于扩增和前进继电器,其中继电器输入和输出信号的光谱部分地重叠。这种部分双工中继模式包括特定情况的半双工。通过将部分双工继电器视为带宽保留线性周期性时变量系统,开发了自干扰下的光谱效率分析。与以前的作品相比,自干扰被认为是有用的信息承载组件,而不是简单地同化噪声。这种方法揭示了关于自干扰对(全双工)继电器性能的影响的先前结果过于悲观。基于自干扰效果的频域解释,还讨论了目的节点处的许多次优解码架构。发现部分双工中继模式可以在频谱效率和接收器复杂性之间提供具有吸引力的折衷。

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