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首页> 外文期刊>IEEE Transactions on Communications >Capacity of the Gaussian Two-Hop Full-Duplex Relay Channel With Residual Self-Interference
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Capacity of the Gaussian Two-Hop Full-Duplex Relay Channel With Residual Self-Interference

机译:具有残留自干扰的高斯两跳全双工中继信道的容量

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In this paper, we investigate the capacity of the Gaussian two-hop full-duplex (FD) relay channel with residual self-interference. This channel is comprised of a source, an FD relay, and a destination, where a direct source-destination link does not exist and the FD relay is impaired by residual self-interference. We adopt the worst case linear self-interference model with respect to the channel capacity, and model the residual self-interference as a Gaussian random variable whose variance depends on the amplitude of the transmit symbol of the relay. For this channel, we derive the capacity and propose an explicit capacity-achieving coding scheme. Thereby, we show that the optimal input distribution at the source is Gaussian and its variance depends on the amplitude of the transmit symbol of the relay. On the other hand, the optimal input distribution at the relay is discrete or Gaussian, where the latter case occurs only when the relay-destination link is the bottleneck link. The derived capacity converges to the capacity of the two-hop ideal FD relay channel without self-interference and to the capacity of the two-hop half-duplex (HD) relay channel in the limiting cases when the residual self-interference is zero and infinite, respectively. Our numerical results show that significant performance gains are achieved with the proposed capacity-achieving coding scheme compared with the achievable rates of conventional HD relaying and/or conventional FD relaying.
机译:在本文中,我们研究了具有剩余自干扰的高斯两跳全双工(FD)中继信道的容量。该信道由一个源,一个FD中继和一个目的地组成,其中不存在直接的源-目的链路,并且FD中继由于残留的自干扰而受到损害。对于信道容量,我们采用最坏情况的线性自干扰模型,并将剩余的自干扰建模为高斯随机变量,其方差取决于中继发射符号的幅度。对于此信道,我们推导容量并提出一个明确的容量实现编码方案。因此,我们表明源处的最佳输入分布是高斯分布,其方差取决于继电器的发射符号的幅度。另一方面,中继器上的最佳输入分布是离散的或高斯的,后者的情况仅在中继器目标链路是瓶颈链路时才会发生。在剩余自干扰为零且极限情况下,在有限的情况下,导出的容量收敛到没有自干扰的两跳理想FD中继信道的容量,并收敛到两跳半双工(HD)中继信道的容量。无穷大。我们的数值结果表明,与传统的HD中继和/或传统的FD中继的可达到的速率相比,所提出的容量实现编码方案可显着提高性能。

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