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一种基于超表面的紧凑型可穿戴天线的新颖设计方法。

A Novel Design Approach for Compact Wearable Antennas Based on Metasurfaces.

作者信息

Zhang Kai, Vandenbosch Guy A E, Yan Sen

出版信息

IEEE Trans Biomed Circuits Syst. 2020 Aug;14(4):918-927. doi: 10.1109/TBCAS.2020.3010259. Epub 2020 Jul 20.

Abstract

This paper presents a novel approach to design compact wearable antennas based on metasurfaces. The behavior of compact metasurfaces is modeled with a composite right-left handed transmission line (CRLH TL). By controlling the dispersion curve, the resonant modes of the compact metasurface can be tuned efficiently. A printed coplanar waveguide (CPW) monopole antenna is used as the feed structure to excite the compact metasurface, which will result in a low profile antenna with low backward radiation. Following this approach, two compact antennas are designed for wearable applications. The first antenna is designed to operate at its first negative mode (-1 mode), which can realize miniaturization, but maintain the broadside radiation as for a normal microstrip antenna. The proposed prototype resonates around 2.65 GHz, with a matching bandwidth of 300 MHz. The total dimensions of the antenna are 39.4 × 33.4 mm (0.1 λ), and its maximum gain is 2.99 dBi. The second antenna targets dual-band operation at 2.45 and 3.65 GHz. A pair of symmetric modes (±1 modes) are used to generate similar radiation patterns in these two bands. The size of the antenna is 55.79 × 52.25 mm (0.2 λ), and the maximum gains are 4.25 and 7.35 dBi in the two bands, respectively. Furthermore, the performance of the antennas is analyzed on the human body. The results show that the proposed antennas are promising candidates for Wireless Body Area Networks (WBAN).

摘要

本文提出了一种基于超表面设计紧凑型可穿戴天线的新方法。紧凑型超表面的行为采用复合左右手传输线(CRLH TL)进行建模。通过控制色散曲线,可以有效地调谐紧凑型超表面的谐振模式。采用印刷共面波导(CPW)单极天线作为馈电结构来激励紧凑型超表面,这将产生一个具有低后向辐射的低剖面天线。按照这种方法,设计了两款用于可穿戴应用的紧凑型天线。第一款天线设计为在其第一负模式(-1模式)下工作,该模式可以实现小型化,但仍能保持与普通微带天线相同的宽边辐射。所提出的原型在2.65 GHz左右谐振,匹配带宽为300 MHz。天线的总尺寸为39.4×33.4 mm(0.1λ),其最大增益为2.99 dBi。第二款天线旨在实现2.45 GHz和3.65 GHz的双频工作。一对对称模式(±1模式)用于在这两个频段产生相似的辐射方向图。天线尺寸为55.79×52.25 mm(0.2λ),在两个频段的最大增益分别为4.25 dBi和7.35 dBi。此外,还对天线在人体上的性能进行了分析。结果表明,所提出的天线是无线体域网(WBAN)的有前途的候选方案。

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