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基于增强性能宽带毫米波天线设计用于短程通信的新型混合技术。

Designing a Novel Hybrid Technique Based on Enhanced Performance Wideband Millimeter-Wave Antenna for Short-Range Communication.

作者信息

Islam Tanvir, Hussain Dildar, Alsunaydih Fahad N, Alsaleem Fahd, Alhassoon Khaled

机构信息

Department of Electrical and Computer Engineering, University of Houston, Houston, TX 77204, USA.

Department of Data Science, Sejong University, Seoul 05006, Republic of Korea.

出版信息

Sensors (Basel). 2024 May 18;24(10):3219. doi: 10.3390/s24103219.

Abstract

This paper presents the design of a performance-improved 4-port multiple-input-multiple-output (MIMO) antenna proposed for millimeter-wave applications, especially for short-range communication systems. The antenna exhibits compact size, simplified geometry, and low profile along with wide bandwidth, high gain, low coupling, and a low Envelope Correlation Coefficient (ECC). Initially, a single-element antenna was designed by the integration of rectangular and circular patch antennas with slots. The antenna is superimposed on a Roger RT/Duroid 6002 with total dimensions of 17 × 12 × 1.52 mm. Afterward, a MIMO configuration is formed along with a novel decoupling structure comprising a parasitic patch and a Defected Ground Structure (DGS). The parasitic patch is made up of strip lines with a rectangular box in the center, which is filled with circular rings. On the other side, the DGS is made by a combination of etched slots, resulting in separate ground areas behind each MIMO element. The proposed structure not only reduces coupling from -17.25 to -44 dB but also improves gain from 9.25 to 11.9 dBi while improving the bandwidth from 26.5-30.5 GHz to 25.5-30.5 GHz. Moreover, the MIMO antenna offers good performance while offering strong MIMO performance parameters, including ECC, diversity gain (DG), channel capacity loss (CCL), and mean effective gain (MEG). Furthermore, a state-of-the-art comparison is provided that results in the overperforming results of the proposed antenna system as compared to already published work. The antenna prototype is also fabricated and tested to verify software-generated results obtained from the electromagnetic (EM) tool HFSS.

摘要

本文介绍了一种为毫米波应用设计的性能改进型4端口多输入多输出(MIMO)天线,特别是用于短程通信系统。该天线尺寸紧凑、几何结构简化、外形低剖面,同时具有宽带宽、高增益、低耦合和低包络相关系数(ECC)。最初,通过将矩形和圆形贴片天线与缝隙集成设计了一个单元素天线。该天线叠放在总尺寸为17×12×1.52毫米的罗杰斯RT/Duroid 6002上。之后,形成了一个MIMO配置以及一种新型去耦结构,该结构包括一个寄生贴片和一个缺陷接地结构(DGS)。寄生贴片由中心有一个矩形框的带状线组成,矩形框内填充有圆环。另一方面,DGS由蚀刻缝隙组合而成,在每个MIMO元件后面形成单独的接地区域。所提出的结构不仅将耦合从-17.25 dB降低到-44 dB,还将增益从9.25 dBi提高到11.9 dBi,同时将带宽从26.5 - 30.5 GHz提高到25.5 - 30.5 GHz。此外,该MIMO天线在提供强大的MIMO性能参数(包括ECC、分集增益(DG)、信道容量损失(CCL)和平均有效增益(MEG))的同时,还具有良好的性能。此外,还提供了与现有技术的比较,结果表明所提出的天线系统比已发表的工作表现更优。还制作并测试了天线原型,以验证从电磁(EM)工具HFSS获得的软件生成结果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9138/11124999/751b5587e662/sensors-24-03219-g002.jpg

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