采用四mimo MED天线的5G室内微型bts天线设计

K. Kaboutari, P. Pinho, A. Oliveira
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引用次数: 2

摘要

这项工作的目的是提出一种新的设计和应用,用于印刷磁电偶极子(MED)天线,具有定向图案和高增益,旨在用于n78-5G NR频段实现。实际上,MED天线的谐振频率应为3.5 GHz,工作在3.3至3.8 GHz范围内。在厚度为1mm的FR4衬底上形成了电偶极子和磁偶极子以及反射器地面结构。制造的天线在其频带内具有10 dBi的稳定增益。在3.5 GHz的谐振频率下,S11小于-25 dB。因此,根据其电气和机械容器的物理规格以及应用要求,设计和制造了四倍多输入/多输出(MIMO)结构。制作的四频mimo天线覆盖3.27 ~ 3.83 GHz频率范围,获得10 dBi增益。由于四mimo天线的单向辐射方向图,天线主方向的共极化和交叉极化辐射方向图对比度大于10 dB。此外,对准和垂直天线提供超过16 dB的隔离。在计算机仿真技术(CST) Studio Suite这一高频仿真软件中对单单元和四mimo MED天线进行了分析。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
5G Indoor Micro-BTS Antenna Design Using Quad-MIMO MED Antennas
The purpose of this work is to present a novel design and application for a printed Magneto-Electric Dipole (MED) antenna with a directional pattern and high gain intended for use in the n78-5G NR frequency band implementations. Indeed, the MED antenna should have a resonance frequency of 3.5 GHz and work within the 3.3 to 3.8 GHz range. The electric and magnetic dipoles as well as a reflector ground structure have been formed on an FR4 substrate with a thickness of 1 mm. The manufactured antenna has a 10 dBi stable gain in its frequency band. It also exhibits a S11 of less than -25 dB at a resonance frequency of 3.5 GHz. As a result, a quad Multiple-Input/Multiple-Output (MIMO) structure is designed and fabricated in accordance with the physical specifications of its electrical and mechanical container and the requirements for the application. The fabricated quad-MIMO antennas covering the frequency range of 3.27 to 3.83 GHz achieve 10 dBi gains. As a result of quad-MIMO antennas' unidirectional radiation patterns, there is a greater than 10 dB contrast between the co- and cross-polarized radiation patterns in the main direction of the antenna. Furthermore, aligned and vertical antennas provide isolation of more than 16 dB. The single-element and quad-MIMO MED antennas are analyzed in Computer Simulation Technology (CST) Studio Suite, a high-frequency simulator software.
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