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用于5G毫米波应用的具有高增益和波束倾斜能力的基于超材料的高隔离度MIMO天线的设计与优化

Design and optimization of metamaterial-based highly-isolated MIMO antenna with high gain and beam tilting ability for 5G millimeter wave applications.

作者信息

Esmail Bashar A F, Koziel Slawomir

机构信息

Department of Enginering, Reykjavik University, 102, Reykjavík, Iceland.

Faculty of Electronics, Telecommunications and Informatics, Gdansk University of Technology, 80-233, Gdansk, Poland.

出版信息

Sci Rep. 2024 Feb 8;14(1):3203. doi: 10.1038/s41598-024-53723-8.

Abstract

This paper presents a wideband multiple-input multiple-output (MIMO) antenna with high gain and isolation, as well as beam tilting capability, for 5G millimeter wave (MMW) applications. A single bow-tie antenna fed by a substrate-integrated waveguide (SIW) is proposed to cover the 28 GHz band (26.5-29.5 GHz) with a maximum gain of 6.35 dB. To enhance the gain, H-shaped metamaterial (MM)-based components are incorporated into the antenna substrate. The trust-region (TR) gradient-based search algorithm is employed to optimize the H-shape dimensions and to achieve a maximum gain of 11.2 dB at 29.2 GHz. The MM structure offers zero index refraction at the desired range. Subsequently, the MIMO system is constructed with two vertically arranged radiators. Another MM, a modified square resonator (MSR), is embedded between the two radiators to reduce the mutual coupling and to tilt the antenna main beam. Herein, the TR algorithm is again used to optimize the MSR dimensions, and to enhance the isolation to a maximum of 75 dB at 28.6 GHz. Further, the MSR can tilt the E-plane radiation by ± 20° with respect to the end-fire direction when alternating between the two ports' excitation. The developed system is validated experimentally with a good matching between the simulated and measured data.

摘要

本文提出了一种用于5G毫米波(MMW)应用的具有高增益、高隔离度以及波束倾斜能力的宽带多输入多输出(MIMO)天线。提出了一种由基片集成波导(SIW)馈电的单蝴蝶结天线,以覆盖28GHz频段(26.5 - 29.5GHz),最大增益为6.35dB。为了提高增益,将基于H形超材料(MM)的组件并入天线基板。采用基于信赖域(TR)梯度的搜索算法来优化H形尺寸,并在29.2GHz处实现11.2dB的最大增益。该MM结构在所需范围内提供零折射率。随后,用两个垂直排列的辐射器构建MIMO系统。在两个辐射器之间嵌入另一种MM,即改进的方形谐振器(MSR),以减少互耦并使天线主波束倾斜。在此,再次使用TR算法来优化MSR尺寸,并在28.6GHz处将隔离度提高到最大75dB。此外,当在两个端口激励之间交替时,MSR可以使E面辐射相对于端射方向倾斜±20°。所开发的系统通过实验验证,模拟数据与测量数据之间具有良好的匹配度。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0e1e/10853225/74b68c704cfa/41598_2024_53723_Fig1_HTML.jpg

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