Beam Selection Algorithm for Beamspace HAP-MIMO Systems Based on Statistical CSI

Shiyi Zou, Ling-ge Jiang, Pingping Ji, Chen He, Di He, Guorong Zhang
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Abstract

In this letter, a beam selection algorithm is put forward for beamspace high altitude platform massive multiple-input multiple-output (HAP-MIMO) systems. Specifically, the algorithm is subject to the maximization of match degree between the beams and users, which is constructed by exploiting statistical channel state information (CSI). The beam selection is partitioned into two parts. In the first part, we obtain a reduced-dimensional dominant beam set consisting of each user’s most preferred beams according to the match degree. In the second part, we formulate the selection of optimal beams from the dominant beam set as an assignment problem that can be solved by Kuhn-Munkres algorithm. Numerical results demonstrate the performance enhancement of the proposed algorithm with respect to energy efficiency.
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基于统计CSI的波束空间HAP-MIMO系统波束选择算法
针对波束空间高空平台大规模多输入多输出(HAP-MIMO)系统,提出了一种波束选择算法。具体而言,该算法以波束与用户匹配度最大化为目标,利用统计信道状态信息(CSI)构建波束与用户匹配度。梁的选择分为两部分。在第一部分中,我们根据匹配度得到由每个用户最喜欢的光束组成的降维优势光束集。在第二部分中,我们将从优势波束集中选择最优波束的问题表述为一个可以用Kuhn-Munkres算法求解的分配问题。数值结果表明,该算法在能效方面得到了提高。
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