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Channel Feedback Codebook Design for Millimeter-Wave Massive MIMO Systems Relying on Lens Antenna Array

机译:依靠透镜天线阵列的毫米波大规模MIMO系统的信道反馈码本设计

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The recently proposed millimeter-wave (mmWave) massive multiple-input multiple-output (MIMO) system relying on a lens antenna array (LAA) significantly reduces the number of radio frequency chains using beam selection. A high data rate can be achieved based on the reduced-dimensional equivalent channel after beam selection. In frequency division duplexing systems, the equivalent channel has to be fed back to the base station (BS) via a feedback channel based on a codebook. However, no dedicated codebook has been proposed for LAA-aided mmWave systems. To fill this gap, in this letter, we propose a reduced-dimensional subspace codebook (RDSC) for such systems. Specifically, under the recently proposed concept of angle coherence time, we first generate the large-dimensional vectors in the channel subspace, which is determined by the angles-of-departure of the dominant paths. Then, based on these vectors in the channel subspace, we create the RDSC by considering both the lens and the beam selector. Finally, the equivalent channel is quantized using the proposed RDSC and fed back to the BS. Finally, we carry out mathematical performance analysis of the proposed RDSC and show that its feedback overhead is rendered proportional to the relatively small number of dominant paths per user. The analytical results are verified by our simulations.
机译:最近提出的依靠透镜天线阵列(LAA)的毫米波(mmWave)大规模多输入多输出(MIMO)系统使用波束选择显着减少了射频链的数量。基于波束选择后的降维等效信道,可以实现高数据速率。在频分双工系统中,必须经由基于码本的反馈信道将等效信道反馈给基站(BS)。但是,尚未提出针对LAA辅助mmWave系统的专用密码本。为了填补这一空白,在这封信中,我们提出了针对此类系统的降维子空间码本(RDSC)。具体而言,在最近提出的角度相干时间概念下,我们首先在通道子空间中生成大尺寸矢量,该矢量由主导路径的离开角度确定。然后,基于通道子空间中的这些向量,我们通过考虑透镜和光束选择器来创建RDSC。最后,等效信道使用建议的RDSC进行量化,并反馈给BS。最后,我们对所提出的RDSC进行了数学性能分析,并表明其反馈开销与每个用户相对较少的主导路径成比例。通过我们的仿真验证了分析结果。

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