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Joint subchannel allocation and hybrid precoding design for mmWave multi-user OFDMA systems

机译:mmWave多用户OFDMA系统的联合子信道分配和混合预编码设计

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This paper studies hybrid precoding (HP) for mmWave multi-user OFDMA systems with sub-carrier allocation (SA) consideration. Constrained by a computation limit on the total number of data streams that can be processed, we aim to jointly optimize the SA and HP design to maximize the system sum-rate. This optimization is first formulated as a computation sparsity-constrained HP design problem, which is non-convex and challenging to solve. We then propose two-stage solution approach to tackle the problem. In stage one, we optimize the fully digital precoding (FDP) considering the computation sparsity constraint. In the second stage, we exploit an alternating MMSE minimization algorithm to reconstruct the HP's based on the achieved FDP. A novel analog precoding design, namely “Projected-Gradient-Descent based”, is then proposed to optimize the analog part of the HP's.
机译:本文研究了考虑子载波分配(SA)的mmWave多用户OFDMA系统的混合预编码(HP)。受到可处理数据流总数的计算限制的约束,我们旨在共同优化SA和HP设计,以最大程度地提高系统总速率。首先,将这种优化公式化为计算稀疏性受限的HP设计问题,该问题是非凸性的,并且难以解决。然后,我们提出了两阶段的解决方案来解决该问题。在第一阶段,我们考虑到计算稀疏性约束来优化全数字预编码(FDP)。在第二阶段,我们利用交替的MMSE最小化算法,基于已实现的FDP重构HP。然后,提出了一种新颖的模拟预编码设计,即“基于投影梯度下降”,以优化HP的模拟部分。

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