A thin and flexible ultra wideband antenna for wireless body area networks with reduced ground plane effect

Kinza Shafique, Muhammad Mustaqim, B. Khan, B. A. Khawaja
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引用次数: 6

Abstract

In this paper, the design, simulation and optimization study of a rectangular microstrip patch antenna (MPA) for ultra wideband (UWB) wireless body area network is presented. The UWB technology provides wideband wireless communication using very narrow pulses and at very low spectral densities. The Federal Commission of Communication allocates the bandwidth of ultra wideband from 3.1GHz to 10.6GHz for the unlicensed radio applications. The proposed antenna is designed and simulated in Agilent advance design system - momentum, an electromagnetic simulator that works on method of moment technique. The antenna is designed using RT/duroid 5880 (εr = 2.2 and h = 0.381mm), a thin and flexible substrate suitable for wearable antennas in body area networks and FR4 substrate (εr = 4.6 and h = 1.6mm). The dimensions of the proposed design for both the substrates is calculated using the well known transmission-line model. An offset feeding technique is used to feed the antenna. The maximum achieved antenna gain and bandwidth using RT/duroid 5880 substrate is 2.96dBi and 8.3GHz, whereas using FR4 substrate is 2.52dBi and 7.7GHz, respectively. The proposed design uses a reduced ground plane technique to achieve the wide bandwidth characteristic.
一种用于减少地平面效应的无线体域网络的超薄柔性超宽带天线
本文介绍了一种用于超宽带无线体域网的矩形微带贴片天线的设计、仿真和优化研究。超宽带技术使用非常窄的脉冲和非常低的频谱密度提供宽带无线通信。美国联邦通信委员会将3.1GHz至10.6GHz的超宽带带宽分配给无证无线电应用。该天线在Agilent超前设计系统-动量电磁模拟器中进行了设计和仿真。天线采用适用于体域网中可穿戴天线的轻薄柔性衬底RT/duroid 5880 (εr = 2.2, h = 0.381mm)和FR4衬底(εr = 4.6, h = 1.6mm)设计。所提出的两种衬底的尺寸都是使用众所周知的在线传输模型计算的。偏置馈电技术是用来给天线馈电的。RT/duroid 5880衬底实现的最大天线增益和带宽分别为2.96dBi和8.3GHz,而FR4衬底实现的最大增益和带宽分别为2.52dBi和7.7GHz。该设计采用了一种减少地平面的技术来实现宽带特性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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