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用于未来毫米波应用的紧凑型、宽带和高增益四端口多输入多输出天线。

Compact, Broadband, and High-Gain Four-Port MIMO Antenna for Future Millimeter Wave Applications.

作者信息

Mousa Ali Esraa, Gunamony Shine Let, Alawad Mohamad A, Alharbi Turki Essa

机构信息

Faculty of Engineering, Communications and Computer Engineering Department, Al-Ahliyya Amman University, Amman 19111, Jordan.

Department of ECE, Karunya Institute of Technology and Sciences, Coimbatore 641114, India.

出版信息

Micromachines (Basel). 2025 May 3;16(5):558. doi: 10.3390/mi16050558.

Abstract

A wideband antenna with a relatively compact size along with a multiple input and multiple output (MIMO) configuration for millimeter wave applications is proposed in this work. The antenna offers a low profile and simple structure. First of all, an antenna is designed using Rogers RT/duroid 6002 (Rogers Corporation, Chandler, AZ, USA) with a thickness of 0.79 mm, offering wideband ranges from 21 to 35 GHz. Subsequently, the unit element is converted into a four-port MIMO antenna to improve the capacity of the system, resulting in a high data rate, which is critical for 5G as well as for devices operating in the mm wave spectrum. The proposed work exhibits total dimensions of 24 × 24 mm and offers a peak gain of 8.5 dBi, with an efficiency of more than 80%. The MIMO performance parameters are also studied, and the antenna offers exceptional performance in terms of mutual coupling (S) without inserting a decoupling structure, envelop correlation coefficient (ECC), and diversity parameters. The proposed MIMO antenna offers a minimum isolation of -25 dBi and an ECC of less than 0.018. All the other MIMO parameter values lie below the acceptable range. The High Frequency Structure Simulator (HFSS) EM software (v.19) tool is used to analyze the antenna and study its performance. The simulated outcomes are verified by fabricating a prototype, where the result offers a good comparison among both results. Moreover, the contrast in terms of different performance parameters is carried out amongst recent research articles, highlighting the key contribution of the presented design. A compact size antenna with a wideband, simplified structure, and stable performance throughout the working band is achieved; thus, it is a solid contender for mm wave applications and 5G devices.

摘要

本文提出了一种用于毫米波应用的尺寸相对紧凑的宽带天线以及多输入多输出(MIMO)配置。该天线具有低剖面和简单的结构。首先,使用厚度为0.79毫米的罗杰斯RT/duroid 6002(美国亚利桑那州钱德勒市的罗杰斯公司)设计了一种天线,其宽带范围为21至35GHz。随后,将单元元件转换为四端口MIMO天线以提高系统容量,从而实现高数据速率,这对于5G以及在毫米波频段工作的设备至关重要。所提出的天线总尺寸为24×24毫米,峰值增益为8.5dBi,效率超过80%。还研究了MIMO性能参数,该天线在不插入去耦结构的情况下,在互耦(S)、包络相关系数(ECC)和分集参数方面表现出色。所提出的MIMO天线的最小隔离度为-25dBi,ECC小于0.018。所有其他MIMO参数值均低于可接受范围。使用高频结构模拟器(HFSS)电磁软件(v.19)工具对天线进行分析并研究其性能。通过制作原型验证了模拟结果,结果表明两者之间具有良好的可比性。此外,在最近的研究文章中对不同性能参数进行了对比,突出了所提出设计的关键贡献。实现了一种具有宽带、简化结构且在整个工作频段性能稳定的紧凑尺寸天线;因此,它是毫米波应用和5G设备的有力竞争者。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1d2a/12113895/0701a6081f08/micromachines-16-00558-g001.jpg

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