Perancangan Antena Mikrostrip Array MIMO 2x2 dengan Metode Slit Pada Frekuensi Kerja 3,5 GHz untuk Sistem Komunikasi 5G

D. Annisah, Syah Alam, Indra Surjati
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Abstract

This study proposes a 2x2 multiple input multiple output (MIMO) microstrip array antenna design with the slit method for a 5G communication system capable of working at a frequency of 3.5 GHz. The antenna is designed using Duroid RO5880 substrate with a dielectric constant value of 2.2, dielectric loss of 0.0009, and a thickness of 1.57 mm. Array and MIMO techniques are used to increase the gain and directivity of the proposed antenna. In addition, MIMO also serves to increase the level of acceptance in multi-user applications. The addition of the slit method aims to reduce the dimensions and increase the bandwidth of the antenna. From the simulation results, the return loss value is -38.89 dB at a frequency of 3.5 GHz with a bandwidth of 241 MHz. The gain obtained from the simulation results is 11.13 dB at a frequency of 3.5 GHz. The isolation loss value obtained is -74.34 dB with a distance between MIMO elements of 40 mm. The application of the slit, array and MIMO methods proposed in this study is able to increase the gain by 42.13% than the single element. In addition, the proposed research has succeeded in reducing patch dimensions by 7.44% and enclosure 28.99% compared to 2x2 MIMO array antennas without slit. The proposed MIMO antenna also has the Envelope Correlation Cofficient (ECC) and Diversity Gain (DG) values that meet the required threshold for MIMO
微条形天线设计MIMO 2x2,方法为5G通信系统的工作频率为3.5 GHz
本研究针对3.5 GHz频率的5G通信系统,提出了一种采用狭缝方法的2x2多输入多输出(MIMO)微带阵列天线设计。该天线采用Duroid RO5880衬底设计,其介电常数为2.2,介电损耗为0.0009,厚度为1.57 mm。阵列和MIMO技术被用来增加天线的增益和指向性。此外,MIMO还有助于提高多用户应用的接受程度。狭缝法的加入是为了减小天线的尺寸,增加天线的带宽。仿真结果表明,在3.5 GHz频率和241 MHz带宽下,回波损耗值为-38.89 dB。仿真结果表明,在3.5 GHz频率下,增益为11.13 dB。当MIMO元件之间的距离为40 mm时,得到的隔离损耗值为-74.34 dB。本文提出的狭缝、阵列和MIMO方法的应用比单元件的增益提高了42.13%。此外,与无狭缝的2x2 MIMO阵列天线相比,该研究成功地将贴片尺寸减小了7.44%,封装尺寸减小了28.99%。所提出的MIMO天线的包络相关系数(ECC)和分集增益(DG)值也满足MIMO所需的阈值
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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