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On Massive MIMO Zero-Forcing Transceiver Using Time-Shifted Pilots

机译:使用时移导频的大规模MIMO零迫力收发器

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摘要

Massive multiple-input–multiple-output (MIMO) antenna system implies the use of a large number of base station (BS) antennas to serve a relatively small number of user terminals (UTs) for extraordinary spectral efficiency. However, its performance is limited by pilot contamination due to unavoidable reuse of pilot sequences from UTs in different cells. In this paper, we analyze the performance of massive MIMO zero-forcing (ZF) systems using the time-shifted pilot scheme, which was known to combat pilot contamination effectively using conjugate beamforming if there is a very large number of antennas. We derive expressions for achievable sum rates and the signal-to-interference-plus-noise ratios (SINRs) of forward and reverse links if the number of BS antennas is finite. Then, the impact of system parameters, such as cell radius, transmit power, group number (a parameter related to the time-shifted pilot scheme), BS antenna number, etc., on the system performance are revealed. Our model embraces a series of previous works as special cases. Moreover, we compare the performance of conjugate and ZF precoders, from which a simple but effective large-scale fading-based UT scheduling scheme is proposed to enhance the system throughput.
机译:大规模多输入多输出(MIMO)天线系统意味着要使用大量基站(BS)天线为相对较少数量的用户终端(UT)服务,以实现出色的频谱效率。然而,由于不可避免地重用来自不同小区中的UT的导频序列,其性能受到导频污染的限制。在本文中,我们使用时移导频方案分析了大规模MIMO迫零(ZF)系统的性能,已知该方法可以在天线数量非常多的情况下使用共轭波束成形有效地对抗导频污染。如果BS天线的数量有限,我们将得出可实现的总速率以及前向和反向链路的信号干扰加噪声比(SINR)的表达式。然后,揭示了诸如蜂窝小区半径,发射功率,组号(与时移导频方案有关的参数),BS天线号等系统参数对系统性能的影响。我们的模型包含一系列以前的工作,作为特例。此外,我们比较了共轭和ZF预编码器的性能,从中提出了一种简单而有效的基于大规模衰落的UT调度方案,以提高系统吞吐量。

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