Study on 5G Massive MIMO Technology Key Parameters for Spectral Efficiency Improvement Including SINR Mapping on Rural Area Test Case

T. R. Delson, Iven Jose
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Abstract

Massive MIMO is one of the key disruptive technologies in 5G which offers significant change in the core network architecture and channel modeling compared to the previous wireless communication standards. There are many research works currently focusing on implementing Massive MIMO network in different channel propagation models. ITU, 3GPP and IMT consortium deliver timely 5G LTE releases and taken as benchmark documents by various telecom companies and universities to set up testing, trials and hardware deployments. However, without optimization on spectral efficiency parameter, the specifications proposed by 5G in terms of improvement in data rate or throughput could be difficult to achieve. This paper initially provides an in-depth study on spectral efficiency estimation and optimization in Massive MIMO by investigating different research papers. From these papers, list of parameters involved in spectral efficiency are identified, such as, fading characteristics, power or energy efficient parameters, standard deviation, angle of arrival factors in antennas installed in base stations and many others. The author however concludes with the best selection of constraint optimization parameters to improve the spectral efficiency taking into account of its simple design and major impact on the improvement in the result by taking downlink scenario of a simulation environment using 5G Massive MIMO network. SINR mapping of standard Rural Macro test scenario adopted from M 2314, LTE release 17 of 5G framework is simulated in this research paper.
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5G大规模MIMO技术农村测试用例SINR映射等频谱效率提升关键参数研究
大规模MIMO是5G的关键颠覆性技术之一,与以前的无线通信标准相比,它在核心网络架构和信道建模方面提供了重大变化。目前有许多研究工作集中在不同信道传播模型下实现大规模MIMO网络。国际电联、3GPP和IMT联盟及时发布5G LTE,并将其作为各电信公司和大学进行测试、试验和硬件部署的基准文件。然而,如果没有对频谱效率参数的优化,5G在数据速率或吞吐量提升方面提出的规范可能难以实现。本文首先对大规模MIMO中频谱效率的估计和优化进行了深入的研究。从这些论文中,确定了频谱效率所涉及的参数列表,如衰落特性、功率或能效参数、标准偏差、基站天线的到达角因子等。本文以5G Massive MIMO网络的下行场景为例,考虑到其设计简单,对结果的改善影响较大,提出了提高频谱效率的约束优化参数的最佳选择。本文模拟了5G框架下采用m2314、LTE release 17的标准Rural Macro测试场景的信噪比映射。
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