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用于紧凑型物联网和5G应用的透明柔性多输入多输出天线的设计与优化。

Design and optimization of a transparent and flexible MIMO antenna for compact IoT and 5G applications.

作者信息

Abbasi Muhammad Nawaz, Aziz Abdul, AlJaloud Khaled, Chishti Abdul Rehman, Alqahtani Ali H, Abbasi Durria, Tahir Farooq A, Khan Zia Ullah, Hussain Rifaqat

机构信息

Faculty of Engineering & Technology, The Islamia University of Bahawalpur, Bahawalpur, Pakistan.

College of Engineering, Muzahimiyah Branch, King Saud University, P.O. Box 2454, Riyadh, 11451, Saudi Arabia.

出版信息

Sci Rep. 2023 Nov 23;13(1):20620. doi: 10.1038/s41598-023-47458-1.

Abstract

This work presents an optically transparent and flexible MIMO antenna that features two square patch elements placed in close proximity, aiming to meet the demands of compactness, flexibility, optical transparency, and visual appeal for IoT applications and future 5G wireless communication. The design includes a simple offset fed configuration to achieve the required isolation and impedance matching. It simplifies the process of creating closely spaced transparent MIMO antenna configurations. By optimizing and analyzing this structure, the antenna achieves better isolation and diversity gain performance, even when the patch elements are positioned very close to each other. To achieve optical transparency and flexibility, the antenna uses thin polyethylene terephthalate (PET) material as a substrate, which is a thermoplastic polymer resin from the polyester family. The wired metal mesh parameters for conducting parts of the MIMO antenna and offset position of the feed are carefully optimized to achieve required optical transparency, isolation, impedance matching and radiation performance without any complex decoupling or impedance matching network.

摘要

这项工作展示了一种光学透明且灵活的多输入多输出(MIMO)天线,其特点是有两个紧密放置的方形贴片元件,旨在满足物联网应用和未来5G无线通信对紧凑性、灵活性、光学透明性和视觉吸引力的需求。该设计包括一个简单的偏置馈电配置,以实现所需的隔离和阻抗匹配。它简化了创建紧密间隔的透明MIMO天线配置的过程。通过对这种结构进行优化和分析,即使贴片元件彼此非常靠近放置,该天线也能实现更好的隔离和分集增益性能。为了实现光学透明性和灵活性,该天线使用薄聚对苯二甲酸乙二酯(PET)材料作为基板,PET是聚酯家族的一种热塑性聚合物树脂。对MIMO天线导电部分的有线金属网参数和馈电的偏移位置进行了仔细优化,以实现所需的光学透明性、隔离、阻抗匹配和辐射性能,而无需任何复杂的去耦或阻抗匹配网络。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2d10/10667224/3ae4e18589a6/41598_2023_47458_Fig1_HTML.jpg

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