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Multipair massive MIMO full-duplex relaying with MRC/MRT processing

机译:具有MRC / MRT处理的多对大规模MIMO全双工中继

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We consider a multipair relay channel, where multiple sources communicate with multiple destinations with the help of a full-duplex (FD) relay station (RS). All sources and destinations have a single antenna, while the RS is equipped with massive arrays. We assume that the RS estimates the channels by using training sequences transmitted from sources and destinations. Then, it uses maximum-ratio combining/maximum-ratio transmission (MRC/MRT) to process the signals. To significantly reduce the loop interference (LI) effect, we propose two massive MIMO processing techniques: i) using a massive receive antenna array; or ii) using a massive transmit antenna array together with very low transmit power at the RS. We derive an exact achievable rate in closed-form and evaluate the system spectral efficiency. We show that, by doubling the number of antennas at the RS, the transmit power of each source and of the RS can be reduced by 1.5 dB if the pilot power is equal to the signal power and by 3 dB if the pilot power is kept fixed, while maintaining a given quality-of-service. Furthermore, we compare FD and half-duplex (HD) modes and show that FD improves significantly the performance when the LI level is low.
机译:我们考虑一个多对中继通道,其中多源借助全双工(FD)中继站(RS)与多个目标进行通信。所有源和目的地都具有单个天线,而RS则配备有大量阵列。我们假设RS通过使用从源和目标发送的训练序列来估计信道。然后,它使用最大比率组合/最大比率传输(MRC / MRT)处理信号。为了显着降低环路干扰(LI)的影响,我们提出了两种大规模MIMO处理技术:i)使用大规模接收天线阵列;或ii)在RS处使用大型发射天线阵列以及极低的发射功率。我们以封闭形式得出精确的可达到的速率,并评估系统的频谱效率。我们表明,通过将RS处的天线数量加倍,如果导频功率等于信号功率,则每个源和RS的发射功率可以降低1.5 dB,如果保持导频功率,则可以降低3 dB。固定,同时保持给定的服务质量。此外,我们将FD模式和半双工(HD)模式进行了比较,结果表明,当LI电平较低时,FD可以显着提高性能。

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