Two-Step User Selection Algorithm for Multi-User Massive MIMO with Hybrid Beamforming

Nobuhide Nonaka, K. Muraoka, S. Suyama, Y. Okumura
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引用次数: 2

Abstract

The fifth-generation (5G) mobile communication system will introduce the use of high frequency bands with wide bandwidth and Massive MIMO technology for realizing higher bit rate than 20 Gbps. One of practical ways to realize Massive MIMO in high frequency bands is hybrid beamforming (BF) that combines analog BF with digital precoding. In multi-user Massive MIMO system employing hybrid BF, user selection is an important function because its performance is highly affected by inter-user interference. However, the computational complexity of the user selection in multi-user Massive MIMO is high because a size of MIMO channel matrix is also large. Furthermore, satisfying user fairness by proportional fairness (PF) criteria leads to further increase of the complexity because re-calculation of precoding and postcoding matrices is required for each combination of selected users. To realize user-fair and lowcomplexity user selection algorithm for high SHF wideband multiuser Massive MIMO employing hybrid BF, this paper proposes a two-step user selection algorithm which is a combination of PF based user selection and chordal distance user selection. Results of computer simulations show that the proposed two-step user selection algorithm can achieve higher system performance than the conventional user selection algorithms do with higher user fairness and lower computational complexity.
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混合波束形成多用户大规模MIMO的两步用户选择算法
第五代(5G)移动通信系统将引入宽带高频带和大规模MIMO技术,以实现超过20gbps的比特率。将模拟波束形成与数字预编码相结合的混合波束形成技术是实现高频段大规模MIMO的一种实用方法。在采用混合BF的多用户大规模MIMO系统中,用户选择是一个重要的功能,因为它的性能受用户间干扰的影响很大。然而,由于MIMO信道矩阵的大小也很大,多用户大规模MIMO中用户选择的计算复杂度很高。此外,由于所选用户的每个组合都需要重新计算预编码和后编码矩阵,因此通过比例公平(PF)标准来满足用户公平性会进一步增加复杂性。为了利用混合BF实现高SHF宽带多用户大规模MIMO的用户公平和低复杂度的用户选择算法,本文提出了一种基于PF的用户选择和弦距用户选择相结合的两步用户选择算法。计算机仿真结果表明,与传统的用户选择算法相比,两步用户选择算法具有更高的用户公平性和更低的计算复杂度,可以获得更高的系统性能。
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