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Adaptive Downlink Beamforming based on SRS for Channel Estimation using Coherence Bandwidth Characteristic in sub-6GHz 5G NR

机译:基于SRS在SUB-6GHz 5G NR中使用相容带宽特性的SRS的自适应下行链路波束形成

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The precise channel estimation is a prerequisite to acquire beamforming performance that the massive multi-input and multi-output (MIMO) system guarantees. There is pre-coding matrix indicator (PMI) based downlink beamforming as the beamforming method using downlink channel estimation. The PMI based downlink beamforming uses grid of beam (GoB) based on codebook. That is why it is challenging to track down the exact location of a mobile station and to obtain the maximum beamforming gain. The sounding reference signal (SRS) based downlink beamforming using uplink channel estimation gets the correlation coefficient between SRSs received from each receiver of a base station and obtains the maximum beamforming gain by tracking down the location of a mobile station accurately. However, as the SRS based downlink beamforming is required to be detected at each receiver of a base station, it has coverage limitation at the cell edge compared to the PMI based downlink beamforming using the combined feedback at a base station. This paper proposes that system obtains the maximum beamforming gain by using the SRS based downlink beamforming at the cell center and supplements coverage limitation by switching it to the PMI based downlink beamforming at the cell edge and using coherence bandwidth.
机译:精确的信道估计是获取大规模多输入和多输出(MIMO)系统保证的波束形成性能的先决条件。基于预编码矩阵指示符(PMI)的下行链路波束形成为使用下行链路信道估计的波束形成方法。基于PMI的下行链路波束形成使用基于码本的光束(GOB)网格。这就是为什么追踪移动台的确切位置并获得最大波束成形增益的原因。使用上行链路信道估计的基于Downlink波束形成的声音参考信号(SRS)获取从基站的每个接收器接收的SRS之间的相关系数,并通过准确地跟踪移动台的位置来获得最大波束成形增益。然而,由于在基站的每个接收器处需要基于SRS的下行链路形成,并且与基于基站的组合反馈的基于PMI的基于PMI的下行链路波束成形相比,在小区边缘处具有覆盖限制。本文提出了通过在单元中心使用基于SRS的下行链路波束成形来获得最大波束成形增益,并通过将基于PMI的下行链路形成在小区边缘和使用相干带宽来补充覆盖限制。

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