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Iterative Matrix Decomposition Aided Block Diagonalization for mm-Wave Multiuser MIMO Systems

机译:毫米波多用户MIMO系统的迭代矩阵分解辅助块对角化

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Considering the dearth for spectrum in the congested microwave band, the next generation of cellular communication systems is envisaged to incorporate part of the millimeter wave (mm-wave) band. Hence, recently, there has been a significant interest in beamforming aided mm-wave systems. We consider a downlink multiuser mm-wave system employing a large number of antennas combined with fewer radio frequency chains both at the base station (BS) and at each of the user equipments (UEs). The BS and each of the UE are assumed to have a hybrid beamforming architecture, where a set of analog phase shifters is followed by digital precoding/combining blocks. In this paper, we propose an iterative matrix decomposition based hybrid beamforming (IMD-HBF) scheme for a single-user scenario, which accurately approximates the unconstrained beamforming solution, we show that the knowledge of the angle of departure (AoD) of the various channel paths is sufficient for the block diagonalization (BD) of the downlink mm-wave channel and hence for achieving interference free channels for each of the UEs, we propose a novel subspace projection based AoD aided BD (SP-AoD-BD) that achieves significantly better performance than the conventional BD, while still only requiring the knowledge of the AoD of various channel paths, and we use IMD-HBF in order to employ SP-AoD-BD in the hybrid beamforming architecture and study its performance with respect to the unconstrained system. We demonstrate using simulation results that the proposed IMD-HBF gives the same spectral efficiency as that of the unconstrained system in the single user scenario. Furthermore, we study the achievable sum rate of the users, when employing SP-AoD-BD with the aid of IMD-HBF and show that the loss in the performance with respect to the unconstrained system as well as the existing schemes is negligible, provided that the number of users is not excessive.
机译:考虑到在拥挤的微波频带中频谱的缺乏,设想了下一代蜂窝通信系统将部分毫米波(mm波)频带合并。因此,近来,在波束形成辅助的毫米波系统中引起了极大的兴趣。我们考虑一种下行链路多用户毫米波系统,该系统在基站(BS)和每个用户设备(UE)均采用大量天线和较少的射频链。假设BS和每个UE具有混合波束成形架构,其中一组模拟移相器之后是数字预编码/组合块。在本文中,我们针对单用户方案提出了一种基于迭代矩阵分解的混合波束成形(IMD-HBF)方案,该方案可以精确地逼近无约束波束成形解决方案,这表明我们了解了各种不同的出射角(AoD)信道路径足以满足下行毫米波信道的块对角化(BD),因此对于实现每个UE的无干扰信道,我们提出了一种新颖的基于子空间投影的AoD辅助BD(SP-AoD-BD)与传统的BD相比,它的性能要好得多,而仍然只需要了解各种信道路径的AoD,我们使用IMD-HBF以便在混合波束成形架构中采用SP-AoD-BD并研究其相对于BD的性能。不受约束的系统。我们使用仿真结果证明,提出的IMD-HBF在单用户情况下的频谱效率与无约束系统的频谱效率相同。此外,我们研究了在借助IMD-HBF来使用SP-AoD-BD时用户可达到的总速率,并表明相对于无约束系统以及现有方案而言,性能损失可忽略不计。用户数量不会过多。

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