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A Multipath Extraction-Based CSI Acquisition Method for FDD Cellular Networks With Massive Antenna Arrays

机译:大规模天线阵FDD蜂窝网络中基于多径提取的CSI捕获方法

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摘要

Unlocking the true potential of massive antenna arrays for cellular networks operating in frequency division duplex (FDD) mode is a challenging task as inadequate channel state information (CSI) by conventional limited-size UE feedback forces crude beamforming in downlink. This paper develops a new technique for the CSI acquisition problem of FDD massive multiple-input multiple-output (MIMO) networks based on estimating the reciprocal characteristics of the multipath channel directly from uplink, while merely the nonreciprocal properties of the dominant propagation paths are estimated and fed back from UE. The main benefits of this technique over compressive-sensing methods include allowing single-beam pilot transmission during downlink training and relaxed UE-side computational complexity, as the full knowledge of CSI vector is no longer required at UE. The design can be accomplished by measuring the direction-of-arrival information and average powers of the dominant paths from uplink, indicating the target dominant paths to corresponding UEs, estimating and subsequently signaling the random phase information of the target paths from each UE, and reconstructing the aggregate CSI vector at eNB. The numerical evaluation results demonstrate that the proposed mechanism offers promising potential for reliable FDD operation in next generation cellular networks equipped with massive antenna arrays.
机译:对于以频分双工(FDD)模式运行的蜂窝网络来说,释放大规模天线阵列的真正潜力是一项艰巨的任务,因为常规有限大小的UE反馈不足的信道状态信息(CSI)会迫使下行链路进行粗波束成形。本文基于直接从上行链路估计多径信道的倒数特性的同时,针对FDD大规模多输入多输出(MIMO)网络的CSI捕获问题开发了一种新技术,而仅估计了主要传播路径的非倒数特性并从UE反馈。与压缩感测方法相比,该技术的主要好处包括:在下行链路训练期间允许单波束导频传输,以及宽松的UE端计算复杂度,因为UE不再需要CSI矢量的全部知识。可以通过测量到达方向信息和来自上行链路的主导路径的平均功率,指示到相应UE的目标主导路径,估计并随后用信号发送来自每个UE的目标路径的随机相位信息,来完成设计。在eNB处重构聚合CSI向量。数值评估结果表明,所提出的机制为配备大规模天线阵列的下一代蜂窝网络中可靠的FDD操作提供了有希望的潜力。

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