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Hybrid analog-digital beamforming for multiuser MIMO millimeter wave relay systems

机译:用于多用户MIMO毫米波中继系统的混合模数波束形成

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This paper proposed new hybrid, analog-digital, beamforming for a multiuser millimeter wave (mm-wave) relay system. For this system, we consider a sum rate maximization problem. The proposed hybrid beamforming is designed indirectly by considering a sum mean square error (MSE) minimization problem while utilizing the solution of digital beamforming. To this end, we assume that the digital beamforming utilizes the well known block diagonalization (BD) approach. Under this assumption, we solve our problem as follows: First, we formulate the sum rate maximization problem as the minimization of the MSE between the received signal of the hybrid and digital beam-forming designs. Then, we design the hybrid beamformings of the source, relay and each destination by leveraging compressive sensing techniques. Simulation results confirm that the proposed hybrid beamforming design achieves performance very close to that of the digital one. Furthermore, we have examined the effects of the number of radio frequency (RF) chains and paths together, and the accuracy of angle of arrival (AoA) and angle of departure (AoD) estimators on the sum rate of the hybrid beamforming designs. Computer simulations reveal that the total sum rate of the hybrid beamforming increases when the number of RF chains and paths increase (or the accuracy of the AoA (AoD) estimator improves).
机译:本文提出了一种用于多用户毫米波(mm-wave)中继系统的新型混合,模拟-数字波束成形。对于该系统,我们考虑总和最大化问题。提出的混合波束成形是在考虑数字波束成形解决方案的同时,通过考虑均方均误差(MSE)最小化问题而间接设计的。为此,我们假设数字波束成形利用了众所周知的块对角化(BD)方法。在此假设下,我们解决了以下问题:首先,将求和率最大化问题公式化为混合和数字波束成形设计的接收信号之间的MSE最小化。然后,我们利用压缩感测技术设计源,中继和每个目标的混合波束成形。仿真结果证实,提出的混合波束成形设计实现了非常接近数字波束形成的性能。此外,我们检查了射频(RF)链和路径数量的影响,以及到达角(AoA)和离开角(AoD)估计量对混合波束成形设计总和率的影响。计算机仿真表明,随着RF链和路径数量的增加(或AoA(AoD)估计器的精度提高),混合波束成形的总和速率也会增加。

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