5G beamforming implementation and trade-off investigation of cylindrical array arrangements

D. Riviello, F. D. Stasio
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引用次数: 2

Abstract

In this paper, we study the performance of a 5G network working at mmW range for the uplink. We consider a single base station scenario equipped with a cylindrical array and a circular array (which can be seen as a single ring cylindrical array), isotropic and directive antenna elements are taken into account and we evaluate the trade-off between antennas per ring and number of rings with fixed number of total antennas. Users are modeled as a spatial Binomial point process in a hexagonal cell. As beamforming techniques, Conventional and Capon algorithms have been considered. As main KPI to evaluate system performance, we consider average achievable per-user rate with different system configurations, such as network loading. The key result of the trade-off investigation is that, when the radius of the cell is much larger than the height of the base station, the best performance occurs when the cylindrical array degenerates in a circular array both when users lay at ground level and with random heights.
5G波束形成实现及圆柱阵列布置的权衡研究
在本文中,我们研究了在毫米波范围内工作的5G网络的上行链路性能。我们考虑了配备圆柱形阵列和圆形阵列(可视为单环圆柱形阵列)的单个基站场景,考虑了各向同性和定向天线元件,并评估了每环天线数和固定总天线数的环数之间的权衡。将用户建模为六边形单元格中的空间二项式点过程。作为波束形成技术,常规算法和Capon算法被考虑。作为评估系统性能的主要KPI,我们考虑不同系统配置(如网络负载)下的平均可实现的每用户速率。权衡研究的关键结果是,当小区半径远远大于基站高度时,当用户处于地面水平和随机高度时,圆柱形阵列退化为圆形阵列时,性能最佳。
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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