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用于3.6GHz 5G基站的超材料启发式平面波束转向天线

Metamaterial-Inspired Flat Beamsteering Antenna for 5G Base Stations at 3.6 GHz.

作者信息

Reis João Ricardo, Vala Mário, Oliveira Tiago Emanuel, Fernandes Telmo Rui, Caldeirinha Rafael Ferreira Silva

机构信息

Polytechnic of Leiria, 2411-901 Leiria, Portugal.

Instituto de Telecomunicações, 2411-901 Leiria, Portugal.

出版信息

Sensors (Basel). 2021 Dec 4;21(23):8116. doi: 10.3390/s21238116.

Abstract

In this paper, a metamaterial-inspired flat beamsteering antenna for 5G applications is presented. The antenna, designed to operate in the 3.6 GHz at 5G frequency bands, presents an unique flat form factor which allows easy deployment and low visual impact in 5G dense scenarios. The antenna presents a multi-layer structure where a metamaterial inspired transmitarray enables the two-dimensional (2D) beamsteering, and an array of microstrip patch antennas is used as RF source. The use of metamaterials in antenna beamsteering allows the reduction of costly and complex phase-shifter networks by using discrete capacitor diodes to control the transmission phase-shifting and subsequently, the direction of the steering. According to simulations, the proposed antenna presents steering range up to ±20∘, achievable in both elevation and azimuth planes, independently. To prove the concept, a prototype of the antenna has been built and experimentally characterised inside an anechoic chamber. Although constructed in a different substrate (FR4 substrate) as initially designed, beamsteering ranges up to 8∘ in azimuth and 13∘ in elevation, limited to the proposed case-studies, are reported with the prototype, validating the antenna and the usefulness of the proposed design.

摘要

本文提出了一种受超材料启发的用于5G应用的平面波束转向天线。该天线设计用于在5G频段的3.6GHz频率下工作,具有独特的扁平外形,便于在5G密集场景中部署且视觉影响小。该天线呈现多层结构,其中受超材料启发的发射阵列实现二维(2D)波束转向,微带贴片天线阵列用作射频源。在天线波束转向中使用超材料可通过使用离散电容二极管控制传输相移以及随后的转向方向,从而减少昂贵且复杂的移相器网络。根据仿真,所提出的天线在仰角和方位角平面上均可独立实现高达±20°的转向范围。为验证该概念,已制作了天线原型并在消声室内进行了实验表征。尽管原型是在与最初设计不同的基板(FR4基板)上构建的,但在所提出的案例研究范围内,该原型在方位角上的波束转向范围高达8°,在仰角上高达13°,验证了该天线及所提出设计的实用性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/be56/8662444/104332d15111/sensors-21-08116-g001.jpg

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