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用于5G室内分布式天线系统的、受超材料启发的、加载有互补开口谐振环(CSRR)和3×3交叉缝隙的电紧凑型三角形天线

Metamaterial-Inspired Electrically Compact Triangular Antennas Loaded with CSRR and 3 × 3 Cross-Slots for 5G Indoor Distributed Antenna Systems.

作者信息

Karimbu Vallappil Arshad, Khawaja Bilal A, Rahim Mohamad Kamal A, Iqbal Muhammad Naeem, Chattha Hassan T

机构信息

Advance RF and Microwave Research Group (ARFMRG), School of Electrical Engineering, Faculty of Engineering, Universiti Teknologi Malaysia, UTM Johor Bahru, Johor Bahru 81310, Johor, Malaysia.

Department of Electrical Engineering, Faculty of Engineering, Islamic University of Madinah, P.O. Box 170, Madinah 41411, Saudi Arabia.

出版信息

Micromachines (Basel). 2022 Jan 27;13(2):198. doi: 10.3390/mi13020198.

Abstract

In this article, two distinct kinds of metamaterial (MTM) antennas are proposed for fifth-generation (5G) indoor distributed antenna systems (IDAS). Both antennas operate in the sub-6 GHz 5G band, i.e., 3.5 GHz. The antenna's radiating structure is based on a combination of triangular and rectangular patches, as well as two complementary split-ring resonators (CSRR) unit-cells etched on the top layer. The bottom layer of the first MTM antenna is a complete ground plane, while the bottom layer of the second MTM antenna is etched by a 3 × 3 cross-slot MTM structure on the ground plane. The use of these structures on the ground plane improves the antenna bandwidth. The proposed antennas are designed using two different substrates i.e., a high-end Rogers thermoset microwave materials (TMM4) substrate ( = 1.524 mm/ = 4.5/ = 0.002) and a low-end flame-resistant (FR4) epoxy glass substrate ( = 1.6 mm/ = 4.3/ = 0.025), respectively. The antenna designs are simulated using CST microwave studio, and in the end, the antenna fabrication is performed using FR4 substrate, and the results are compared. Furthermore, parametric analysis and comparative studies are carried out to investigate the performance of the designed antennas. The simulated and measured results are presented for various parameters such as return-loss, gain, and radiation pattern. The two MTM antennas have an overall dimension of 18 × 34 mm, demonstrating that the proposed design is 60 percent smaller than a standard microstrip patch antenna (MPA). The two proposed MTM antenna designs with complete ground plane and 3 × 3 cross-slot MTM on the bottom layer using FR4 substrate have a measured gain/bandwidth characteristic of 100 MHz/2.6 dBi and 700 MHz/2.3 dBi, respectively.

摘要

在本文中,针对第五代(5G)室内分布式天线系统(IDAS)提出了两种不同类型的超材料(MTM)天线。这两种天线均在低于6 GHz的5G频段,即3.5 GHz下工作。天线的辐射结构基于三角形和矩形贴片的组合,以及蚀刻在顶层的两个互补分裂环谐振器(CSRR)单元。第一种MTM天线的底层是完整的接地平面,而第二种MTM天线的底层在接地平面上蚀刻有一个3×3的交叉缝隙MTM结构。在接地平面上使用这些结构可提高天线带宽。所提出的天线分别使用两种不同的基板进行设计,即高端的罗杰斯热固性微波材料(TMM4)基板(厚度 = 1.524毫米/介电常数 = 4.5/损耗角正切 = 0.002)和低端的阻燃(FR4)环氧玻璃基板(厚度 = 1.6毫米/介电常数 = 4.3/损耗角正切 = 0.025)。天线设计使用CST微波工作室进行模拟,最后使用FR4基板进行天线制造,并对结果进行比较。此外,还进行了参数分析和对比研究,以研究设计天线的性能。给出了各种参数(如回波损耗、增益和辐射方向图)的模拟和测量结果。这两种MTM天线的整体尺寸为18×34毫米,表明所提出的设计比标准微带贴片天线(MPA)小60%。所提出的两种MTM天线设计,一种底层为完整接地平面,另一种底层为使用FR4基板的3×3交叉缝隙MTM,其测量得到的增益/带宽特性分别为100 MHz/2.6 dBi和700 MHz/2.3 dBi。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d567/8876282/f63537442ba4/micromachines-13-00198-g001.jpg

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