毫米波射频射频前调中的混合波束形成

L. Combi, U. Spagnolini
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引用次数: 5

摘要

在本文中,我们考虑了一种集中式无线接入网(C-RAN)架构,该架构基于光纤无线电(RoF)范式,在远程天线单元(rau)和基带单元(BBUs)之间具有完全模拟的前传链路。在RAU和BBU之间进行波束形成,以分离来自用户池的上行信号。光学波束成形在RAU站点执行,目的是减少BBU上的前传信道和相应的模拟/数字转换器的数量,这是毫米波(mmWave)无线电通信的强制性要求。数字基带处理完成BBU的波束形成,并补偿光学波束形成缺陷。本文考虑了最小均方误差(MMSE)波束形成,并将其与上行链路的全模拟前馈相结合。利用毫米波信道的空间稀疏性,通过仅相位近似信道的主要特征向量进行前传压缩。验证采用多天线的无线电链路能力,以满足大规模MIMO技术的需求。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Hybrid beamforming in RoF fronthauling for millimeter-wave radio
In this paper we consider a centralized radio access network (C-RAN) architecture with a fully analog fronthaul link between remote antenna units (RAUs) and baseband units (BBUs) based on the radio over fiber (RoF) paradigm. Beamforming to separate uplink signals received from a pool of users is splitted between RAU and BBU. Optical beamforming is performed at the RAU site with the aim of reducing the number of fronthaul channels and the corresponding analog/digital converters at the BBU, as mandatory for millimeter wave (mmWave) radio communication. Digital baseband processing completes the beamforming at the BBU and compensates for optical beamforming imperfections. In this paper the minimum mean square error (MMSE) beamforming is considered, paired with all-analog fronthauling for the uplink. Spatial sparsity of the mmWave channel is leveraged for fronthaul compression through phase-only approximation of the dominant eigenvectors of the channel. Validation is on the radio-link capabilities employing multiple antennas to meet the demand for massive MIMO technology.
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