User pairing impact on the performance of hybrid beamforming NOMA system

I.A. Yussuff, A.A. Akanni
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引用次数: 0

Abstract

This paper proposes a new user pairing technique for a power domain nonorthogonal multiple access (NOMA) deploying fully connected and subconnected hybrid beamforming (HBF) structures for a typical urban microcell downlink of line-of-sight (LOS) and non-line-of-sight  (NLOS) surroundings. NOMA system’s configurations are set up for two (multiple input single output) users per cluster down- linking base station equipped with 128 antennas. HBF processing adopts phased zero forcing (P-ZF) for both fully connected (HBFNOMA)  structure (FCS) and sub-connected (HBF-NOMA) structure (SCS) precoders’ optimization, and successive interference cancellation zero  forcing (SIC-ZF) schemes to optimize the SCS-HBF-NOMA precoder exploiting dynamic power allocation. The new users’ pairing exploits  users’ distance to the base station, namely near and far clusters different from the benchmark angle of arrival- based users’ pairing. The  proposed users’ pairing and the precoding schemes’ impact are investigated for finite-resolution HBF structures operating in LOS and  NLOS surroundings. The execution under New York University (NYU) mmW channel model is explored for two users in a cluster with  different angles of arrival. Results show that the users’ pairing based on AoA performs better than the newly proposed users’ pairing.  However, the proposed users’ pairing scheme performs better than their corresponding OMA counterparts, which still make them  beneficial for multiple access technique and a scenario, where one of the far cluster users need to access the base station for high data rate service and vice versa. Finally, the modified Liang processing scheme for quantizing SCS-HBF-NOMA precoder is capable of  mitigating the quantization error arising from the NLOS environment and the nature of sub-connected (HBF) structure under a low SNR  regime.
用户配对对混合波束形成NOMA系统性能的影响
针对典型的城市微蜂窝下行视距(LOS)和非视距(NLOS)环境,提出了一种基于全连接和子连接混合波束形成(HBF)结构的功率域非正交多址(NOMA)用户配对新技术。NOMA系统的配置设置为每个集群下行连接基站配备128个天线的两个(多输入单输出)用户。HBF处理采用全连接(HBF- noma)结构(FCS)和子连接(HBF- noma)结构(SCS)预编码器优化的分阶段零强制(P-ZF)方案,以及利用动态功率分配的连续干扰抵消零强制(SIC-ZF)方案来优化SCS-HBF- noma预编码器。新用户配对利用用户到基站的距离,即远近集群与基准到达角度不同的用户配对。研究了在低视距和非低视距环境下运行的有限分辨率HBF结构的用户配对和预编码方案的影响。研究了在纽约大学(NYU)毫米波信道模型下集群中两个用户不同到达角度的执行。结果表明,基于AoA的用户配对优于新提出的用户配对。然而,所提出的用户配对方案比相应的OMA方案性能更好,这仍然使其有利于多址技术和远端集群用户需要访问基站以获得高数据速率服务的场景。最后,采用改进的Liang处理方案对SCS-HBF-NOMA预编码器进行量化,能够减轻低信噪比下由于NLOS环境和子连接(HBF)结构的性质而产生的量化误差。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
0.10
自引率
0.00%
发文量
126
审稿时长
11 weeks
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