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Beam-Selection-Based Statistical Beamforming for FDD Massive MIMO: Exploiting Spatial Reciprocity

机译:FDD大规模MIMO的基于波束选择的统计波束形成:利用空间互惠

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In this paper, we study the beamforming design problem in frequency-division duplexing (FDD) massive MIMO downlink systems, where instantaneous channel state information (CSI) is unavailable at the base station (BS). We propose to extract the spatial information (i.e., the angle parameters and the large-scale fading coefficients) of the downlink channel from the uplink channel estimation procedure, based on which a novel downlink beamforming design is provided. Furthermore, we derive a sum-rate expression and its approximations for the proposed system. By maximizing the resultant sum-rate, we develop a low-complexity beam selection scheme. Numerical results demonstrate that our proposed algorithm has a significant improvement compared to the existing statistical beamforming (SBF) approaches.
机译:在本文中,我们研究了频分双工(FDD)大规模MIMO下行链路系统中的波束成形设计问题,在该系统中,基站(BS)无法获得瞬时信道状态信息(CSI)。我们建议从上行链路信道估计过程中提取下行链路信道的空间信息(即角度参数和大规模衰落系数),在此基础上提供一种新颖的下行链路波束成形设计。此外,我们推导了所提出系统的求和率表达式及其近似值。通过最大程度地提高总和率,我们开发了一种低复杂度的光束选择方案。数值结果表明,与现有的统计波束形成(SBF)方法相比,我们提出的算法具有明显的改进。

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