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Design and comparative analysis of conventional and metamaterial‐based textile antennas for wearable applications

机译:常规和基于超材料的纺织天线在可穿戴应用中的设计和比较分析

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摘要

In this paper, four different models of a 2.4 GHz flexible microstrip patch wearable antenna are designed and analyzed. The basic geometry of the radiating element of the antennas is a rectangular patch and is backed by conventional, mushroom-type, slotted, and spiral electromagnetic band gap (EBG) ground planes. A 3-mm-thick wash cotton textile is used as a substrate material in the design of the antennas as well as EBG surfaces. An electro-textile (Zelt) is used as a conductive material for the proposed antennas. The performance of these antennas is analyzed in terms of return loss, gain, bandwidth efficiency, and specific absorption rate (SAR) using Computer Simulation Technology Microwave Studio (CST MWS). The designed antennas are further investigated for on and off body conditions under normal and bent states. The experimental results show that the antennas radiate with an adequate gain (5.72-7.3 dB), bandwidth (65.43-103.1 MHz), and efficiency (55.51%-74.04%), depending on the type of the ground plane used. The antenna backed by the mushroom-type EBG gives the smallest value of SAR (1.79 W/kg < 2 W/kg), which makes it a suitable candidate for body worn applications in the unlicensed industrial, scientific, and medical (ISM) band.
机译:本文设计并分析了2.4 GHz柔性微带贴片可穿戴天线的四种不同模型。天线的辐射元件的基本几何形状是一个矩形贴片,并以常规的蘑菇形,开槽和螺旋电磁带隙(EBG)接地平面作为后盾。在天线以及EBG表面的设计中,将3毫米厚的洗涤棉纺织品用作基材。电纺织物(Zelt)用作所提出天线的导电材料。使用计算机仿真技术微波工作室(CST MWS),根据回波损耗,增益,带宽效率和比吸收率(SAR)来分析这些天线的性能。进一步研究了设计天线在正常和弯曲状态下的开关状态。实验结果表明,根据所使用的接地平面的类型,天线以适当的增益(5.72-7.3 dB),带宽(65.43-103.1 MHz)和效率(55.51%-74.04%)辐射。蘑菇型EBG支持的天线具有最小的SAR(1.79 W / kg <2 W / kg),这使其非常适合无执照的工业,科学和医学(ISM)频段的人体穿戴应用。

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