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利用特征模式分析提高可穿戴式低剖面贴片天线的圆极化性能。

Enhancing Circular Polarization Performance of Low-Profile Patch Antennas for Wearables Using Characteristic Mode Analysis.

机构信息

Division ESAT-WaveCoRE, KU Leuven, 3001 Leuven, Belgium.

Department of Engineering, Strand Campus, King's College London, London WC2R 2LS, UK.

出版信息

Sensors (Basel). 2023 Feb 23;23(5):2474. doi: 10.3390/s23052474.

Abstract

A wearable antenna functioning in the 2.4 GHz band for health monitoring and sensing is proposed. It is a circularly polarized (CP) patch antenna made from textiles. Despite its low profile (3.34 mm thickness, 0.027 ), an enhanced 3-dB axial ratio (AR) bandwidth is achieved by introducing slit-loaded parasitic elements on top of analysis and observations within the framework of Characteristic Mode Analysis (CMA). In detail, the parasitic elements introduce higher-order modes at high frequencies that may contribute to the 3-dB AR bandwidth enhancement. More importantly, additional slit loading is investigated to preserve the higher-order modes while relaxing strong capacitive coupling invoked by the low-profile structure and the parasitic elements. As a result, unlike conventional multilayer designs, a simple single-substrate, low-profile, and low-cost structure is achieved. While compared to traditional low-profile antennas, a significantly widened CP bandwidth is realized. These merits are important for the future massive application. The realized CP bandwidth is 2.2-2.54 GHz (14.3%), which is 3-5 times that of traditional low-profile designs (thickness < 4 mm, 0.04 ). A prototype was fabricated and measured with good results.

摘要

提出了一种用于健康监测和传感的工作在 2.4GHz 频段的可穿戴天线。它是一种由纺织品制成的圆极化(CP)贴片天线。尽管其剖面很低(厚度为 3.34 毫米,0.027 ),但通过在特征模式分析(CMA)的框架内分析和观察,在顶部引入缝隙加载寄生元件,实现了增强的 3dB 轴比(AR)带宽。具体来说,寄生元件在高频引入了更高阶模式,这可能有助于增强 3dB AR 带宽。更重要的是,额外的缝隙加载被研究用于在保持低剖面结构和寄生元件引起的强电容耦合的同时保留高阶模式。因此,与传统的多层设计不同,实现了简单的单基板、低剖面和低成本结构。与传统的低剖面天线相比,实现了显著拓宽的 CP 带宽。这些优点对于未来的大规模应用非常重要。实现的 CP 带宽为 2.2-2.54GHz(14.3%),是传统低剖面设计(厚度<4mm,0.04)的 3-5 倍。制作了一个原型并进行了测量,结果良好。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6c1c/10007468/008ce337e087/sensors-23-02474-g001.jpg

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