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基于优化寄生结构和接地改进的低互耦双频段毫米波MIMO天线

Dual-band millimetre wave MIMO antenna with reduced mutual coupling based on optimized parasitic structure and ground modification.

作者信息

Esmail Bashar A F, Isleifson Dustin, Koziel Slawomir

机构信息

Department of Electrical & Computer Engineering, University of Manitoba, Winnipeg, MB, R3T 5V6, Canada.

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

出版信息

Sci Rep. 2024 Sep 3;14(1):20507. doi: 10.1038/s41598-024-71189-6.

Abstract

In this study, a high-isolation dual-band (28/38 GHz) multiple-input-multiple-output (MIMO) antenna for 5G millimeter-wave indoor applications is presented. The antenna consists of two interconnected patches. The primary patch is connected to the inset feed, while the secondary patch is arc-shaped and positioned over the main patch, opposite to the feed. Both patches function in the lower 28 GHz band, while the primary patch is accountable for inducing the upper 38 GHz band. An expedited trust-region (TR) algorithm is employed to optimize the dimensions of the antenna components, ensuring the antenna operates efficiently with high reflection at both bands. The antenna demonstrates a gain exceeding 7 dBi at both frequencies. An array of four antennas is configured orthogonally to create a MIMO system with isolation surpassing 19 dB. The isolation is further enhanced through the addition of a circular parasitic patch at the front and modifications made to the ground. The TR method is employed again to optimize their parameters and achieve the desired isolation, exceeding 32 dB at both bands. The MIMO system demonstrates outstanding diversity performance at both frequencies, characterized by low values of the envelope correlation coefficient (ECC) (< 10 - 4), channel capacity loss (CCL) (< 0.03 bit/s/Hz), and total active reflection coefficient (TARC) (< - 10 dB). Additionally, it secures a diversity gain (DG) exceeding 9.99 dB. The MIMO system is manufactured and tested, showing good alignment between simulation and measurement data for all performance metrics.

摘要

在本研究中,提出了一种用于5G毫米波室内应用的高隔离度双频段(28/38GHz)多输入多输出(MIMO)天线。该天线由两个相互连接的贴片组成。主贴片连接到嵌入式馈电,而副贴片为弧形,位于主贴片上方,与馈电相对。两个贴片均在较低的28GHz频段工作,而主贴片负责激发较高的38GHz频段。采用一种加速信赖域(TR)算法来优化天线组件的尺寸,确保天线在两个频段均能高效运行且具有高反射率。该天线在两个频率上的增益均超过7dBi。将四个天线正交配置以创建一个隔离度超过19dB的MIMO系统。通过在前端添加圆形寄生贴片和对地板进行修改,进一步提高了隔离度。再次采用TR方法来优化其参数并实现所需的隔离度,在两个频段均超过32dB。该MIMO系统在两个频率上均表现出出色的分集性能,其特征在于包络相关系数(ECC)(<10 - 4)、信道容量损失(CCL)(<0.03bit/s/Hz)和总有源反射系数(TARC)(<-10dB)的值较低。此外,它还确保了超过9.99dB的分集增益。制造并测试了该MIMO系统,结果表明所有性能指标的仿真数据与测量数据之间具有良好的一致性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3535/11371827/33e34b5a31bd/41598_2024_71189_Fig1_HTML.jpg

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