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A Generalized Framework on Beamformer Design and CSI Acquisition for Single-Carrier Massive MIMO Systems in Millimeter Wave Channels

机译:毫米波信道中单载波大规模MIMO系统波束形成器设计和CSI捕获的通用框架

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In this paper, we establish a general framework on the reduced dimensional channel state information (CSI) estimation and pre-beamformer design for frequency-selective massive multiple-input multiple-output (MIMO) systems employing single- carrier (SC) modulation in time division duplex (TDD) mode by exploiting the joint angle-delay domain channel sparsity in millimeter (mm) wave frequencies. First, based on a generic subspace projection taking the joint angle-delay power profile and user-grouping into account, the reduced-rank minimum mean square error (RR-MMSE) instantaneous CSI estimator is derived for spatially correlated wideband MIMO channels. Second, the statistical pre-beamformer design is considered for frequency-selective SC massive MIMO channels. We examine the dimension reduction problem and subspace (beamspace) construction on which the RR-MMSE estimation can be realized as accurately as possible. It is observed that the proposed techniques show remarkable robustness to the pilot interference (or contamination) with a significant reduction in pilot overhead.
机译:在本文中,我们针对采用单载波(SC)调制的频率选择大规模多输入多输出(MIMO)系统的降维信道状态信息(CSI)估计和预波束形成器设计建立了通用框架通过利用联合的角度延迟域通道稀疏度(以毫米(mm)的波频率)来划分双工(TDD)模式。首先,基于考虑了联合角延迟功率分布和用户分组的通用子空间投影,针对空间相关的宽带MIMO信道推导了降秩最小均方误差(RR-MMSE)瞬时CSI估计器。其次,针对频率选择SC大规模MIMO信道考虑统计前置波束形成器设计。我们研究了降维问题和子空间(波束空间)构造,在该构造上可以尽可能准确地实现RR-MMSE估计。可以看出,所提出的技术对导频干扰(或污染)显示出显着的鲁棒性,并且导频开销显着减少。

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