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一种集成频率选择表面的宽带高增益微带阵列天线,用于6GHz以下5G应用。

A Wideband High-Gain Microstrip Array Antenna Integrated with Frequency-Selective Surface for Sub-6 GHz 5G Applications.

作者信息

Alwareth Husam, Ibrahim Imran Mohd, Zakaria Zahriladha, Al-Gburi Ahmed Jamal Abdullah, Ahmed Sharif, Nasser Zayed A

机构信息

Microwave Research Group (MRG), Centre for Telecommunication Research & Innovation (CeTRI), Fakulti Kejuruteraan Elektronik dan Kejuruteraan Komputer (FKEKK), Universiti Teknikal Malaysia Melaka (UTeM), Hang Tuah Jaya, Durian Tunggal 76100, Malaysia.

Faculty of Engineering and Technology, Multimedia University (MMU), Ayer Keroh 75450, Malaysia.

出版信息

Micromachines (Basel). 2022 Jul 29;13(8):1215. doi: 10.3390/mi13081215.

Abstract

This paper presents a wideband and high-gain rectangular microstrip array antenna with a new frequency-selective surface (FSS) designed as a reflector for the sub-6 5G applications. The proposed antenna is designed to meet the US Federal Communications Commission (FCC) standard for 5G in the mid-band (3.5-5 GHz) applications. The designed antenna configuration consists of 1 × 4 rectangular microstrip array antenna with an FSS reflector to produce a semi-stable high radiation gain. The modeled FSS delivered a wide stopband transmission coefficient from 3.3 to 5.6 GHz and promised a linearly declining phase over the mid-band frequencies. An equivalent circuit (EC) model is additionally performed to verify the transmission coefficient of the proposed FSS structure for wideband signal propagation. A low-cost FR-4 substrate material was used to fabricate the antenna prototype. The proposed wideband array antenna with an FSS reflector attained a bandwidth of 2.3 GHz within the operating frequency range of 3.5-5.8 GHz, with a fractional bandwidth of 51.12%. A high gain of 12.4 dBi was obtained at 4.1 GHz with an improvement of 4.4 dBi compared to the antenna alone. The gain variation was only 1.0 dBi during the entire mid-band. The total dimension of the fabricated antenna prototype is 10.32 λ × 4.25 λ ×1.295 λ at a resonance frequency of 4.5 GHz. These results make the presented antenna appropriate for 5G sub-6 GHz applications.

摘要

本文提出了一种宽带高增益矩形微带阵列天线,该天线带有一种新型频率选择表面(FSS),设计用作低于6GHz频段5G应用的反射器。所提出的天线旨在满足美国联邦通信委员会(FCC)针对5G中频段(3.5 - 5GHz)应用的标准。所设计的天线配置由一个1×4矩形微带阵列天线和一个FSS反射器组成,以产生半稳定的高辐射增益。所建模的FSS在3.3至5.6GHz范围内提供了宽阻带传输系数,并保证在中频段频率上相位呈线性下降。此外,还进行了等效电路(EC)模型验证所提出的FSS结构对于宽带信号传播的传输系数。采用低成本的FR - 4基板材料制作天线原型。所提出的带有FSS反射器的宽带阵列天线在3.5 - 5.8GHz工作频率范围内实现了2.3GHz的带宽,分数带宽为51.12%。在4.1GHz时获得了12.4dBi的高增益,与单独的天线相比增益提高了4.4dBi。在整个中频段内增益变化仅为1.0dBi。在4.5GHz谐振频率下,所制作天线原型的总尺寸为10.32λ×4.25λ×1.295λ。这些结果使得所展示的天线适用于5G低于6GHz频段的应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7967/9416536/080295201c73/micromachines-13-01215-g001.jpg

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