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Structured non-uniformly spaced rectangular antenna array design for FD-MIMO systems

机译:用于FD-mImO系统的结构化非均匀间隔矩形天线阵列设计

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摘要

Full-dimensional multiple-input multiple-output (FD-MIMO) systems, whereby each base station is equipped with a uniformly spaced rectangular antenna array (URA), provides a practical means of realizing massive MIMO systems. However, the spectral efficiency of URA is considerably lower than that of its uniformly spaced linear array counterpart having the same number of antenna elements. In this paper, we first introduce a discrete angular resolution metric for quantifying the low resolution of URA in the antenna-elevation domain. This motivates us to propose a novel antenna device design, referred to as the structured non-uniformly spaced rectangular array (NURA), in which the antenna elements are non-uniformly distributed in the elevation-angle domain. Specifically, we conceive a structured NURA device for which the nonuniform distribution of the elevation-domain antenna elements is controlled by a single parameter. The design of the optimally structured NURA for the given nonlinear antenna-element-positioning function then becomes a single parameter optimization, namely, that of maximizing the spectral efficiency of the FD-MIMO system, which can be solved efficiently. Our simulation results demonstrate that our structured NURA design significantly outperforms the standard URA in terms of achievable spectral efficiency. Our proposed structured NURA design therefore offers an effective practical framework for enhancing the achievable performance of FD-MIMO systems.
机译:每个基站都配备有均匀间隔的矩形天线阵列(URA)的全尺寸多输入多输出(FD-MIMO)系统提供了一种实现大规模MIMO系统的实用方法。但是,URA的频谱效率明显低于其具有相同数量天线元件的均匀间隔线性阵列对应物的频谱效率。在本文中,我们首先介绍了一种离散角分辨率度量,用于量化天线高程域中URA的低分辨率。这促使我们提出一种新颖的天线设备设计,称为结构化非均匀间隔矩形阵列(NURA),其中天线元件在仰角域中非均匀分布。具体而言,我们设想一种结构化NURA设备,其高程域天线元件的不均匀分布由单个参数控制。然后,针对给定的非线性天线元素定位功能,优化结构的NURA的设计就变成了单参数优化,即最大化FD-MIMO系统的频谱效率,可以有效解决。我们的仿真结果表明,在可实现的频谱效率方面,我们的结构化NURA设计显着优于标准URA。因此,我们提出的结构化NURA设计为增强FD-MIMO系统的可实现性能提供了有效的实用框架。

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