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首页> 外文期刊>IEEE Journal on Selected Areas in Communications >Spectral and Energy Efficiency of Multipair Two-Way Full-Duplex Relay Systems With Massive MIMO
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Spectral and Energy Efficiency of Multipair Two-Way Full-Duplex Relay Systems With Massive MIMO

机译:具有大规模MIMO的多对两路全双工中继系统的频谱和能效

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摘要

In this paper, we consider a multipair amplify-and-forward two-way relay channel, where multiple pairs of full-duplex users exchange information through a full-duplex relay with massive antennas. For improving the energy efficiency, four typical power-scaling schemes are proposed based on the maximum-ratio combining/maximum-ratio transmission (MRC/MRT) and zero-forcing reception/zero-forcing transmission (ZFR/ZFT) at the relay. When the number of relay antennas tends to infinity, we quantify the asymptotic spectral efficiencies and energy efficiencies for the proposed power-scaling schemes. We show that the loop interference can be reduced by decreasing the transmit power under massive relay antennas. Besides, the inter-pair interference and inter-user interference in such systems can also be eliminated in large number of antennas. Moreover, we analytically compare the performance between MRC/MRT and ZFR/ZFT, and describe the impact of the number of user pairs on the spectral efficiency. We also evaluate the energy efficiency performance based on the practical power consumption model, and depict the impact of the relay antenna number on the energy efficiencies for the proposed schemes. Furthermore, we provide the available regions where full-duplex systems can outperform half-duplex systems. Finally, we show that the proposed schemes achieve good performance tradeoffs between the spectral efficiency and the energy efficiency.
机译:在本文中,我们考虑了多对放大和转发双向中继信道,其中多对全双工用户通过带有大型天线的全双工中继交换信息。为了提高能量效率,基于中继器的最大比率组合/最大比率传输(MRC / MRT)和强制零接收/强制零传输(ZFR / ZFT),提出了四种典型的功率缩放方案。当中继天线的数量趋于无穷大时,我们针对拟议的功率缩放方案对渐近频谱效率和能量效率进行了量化。我们表明,可以通过减少大型中继天线下的发射功率来降低环路干扰。此外,这种系统中的线对间干扰和用户间干扰也可以在大量天线中消除。此外,我们在分析上比较了MRC / MRT和ZFR / ZFT之间的性能,并描述了用户对数量对频谱效率的影响。我们还根据实际功耗模型评估了能效性能,并描述了所建议方案中中继天线数量对能效的影响。此外,我们提供了全双工系统可以胜过半双工系统的可用区域。最后,我们证明了所提出的方案在频谱效率和能量效率之间实现了良好的性能折衷。

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