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Analysis of an air-spaced patch antenna near 1800 MHz.

机译:1800 MHz附近的空间隔贴片天线的分析。

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摘要

Microstrip antennas are a type of printed antenna which consists of a patch on top of a grounded substrate. A major limitation for the performance of the patch antenna is the dielectric substrate. The idea of using air as dielectric was therefore considered to overcome that limitation because air has the lowest permittivity and no loss. The goal of this work is to build an air-spaced patch antenna, with the minimum resonant frequency at 1800 MHz and with a return loss of at least 10 dB.;This work is novel because the air-spaced patch antenna has not been extensively studied. Existing literature on patch antennas with dielectric were used for the design of the antenna (dimensions of the patch, ground plane and height) and to understand the principles of operation of microstrip patch antennas in general. Simulations using the NEC code and experiments in the RF laboratory were used for this air-spaced patch antenna study.;The Numerical Electromagnetic Code (NEC) was used as the simulation tool in this work. The air-spaced patch antenna was simulated to find a trend for the variation of the return loss and impedance with the resonant frequency. Simulation also helped determine cases that will not be meaningful to explore in the experiment.;The experiment was done in the RF laboratory of Marquette University College of Engineering. Two procedures were used to calculate the patch dimensions using two different sources ([2], [3]). They lead to two patch antennas that were tested. For each antenna, the height of the dielectric substrate and the recess feed distance were varied. Antenna 2 (procedure 2 - [3]) provided the best results with a resonant frequency of 1800 MHz and a return loss of 21 dB.;It was found that the error between experimental and simulation resonant frequency is generally 5% or less. This error increases as the dielectric height increases, and as the recess distance increases. Simulation results roughly follow the experimental results trend.
机译:微带天线是一种印刷天线,由接地基板顶部的贴片组成。贴片天线性能的主要限制是介电基板。因此认为使用空气作为电介质的想法克服了该限制,因为空气具有最低的介电常数并且没有损耗。这项工作的目标是构建一个空间隔的贴片天线,其最小谐振频率为1800 MHz,回波损耗至少为10 dB。这项工作是新颖的,因为空间隔的贴片天线尚未广泛使用研究。现有的有关带电介质的贴片天线的文献被用于天线的设计(贴片的尺寸,接地平面和高度),并通常了解微带贴片天线的工作原理。使用NEC代码进行仿真,并在RF实验室中进行了实验,用于该空气间隔贴片天线的研究。;数字电磁代码(NEC)被用作仿真工具。模拟了空气间隔贴片天线,以找到回波损耗和阻抗随谐振频率变化的趋势。仿真还帮助确定了在实验中没有意义的案例。该实验是在Marquette大学工程学院的RF实验室完成的。使用两个不同的来源([2],[3])使用了两个过程来计算补丁尺寸。它们导致了两个经过测试的贴片天线。对于每个天线,介电基片的高度和凹进进给距离是变化的。天线2(过程2-[3])以1800 MHz的谐振频率和21 dB的回波损耗提供了最佳结果;发现实验和仿真谐振频率之间的误差通常为5%或更小。该误差随着电介质高度的增加以及凹陷距离的增加而增加。仿真结果大致遵循实验结果趋势。

著录项

  • 作者单位

    Marquette University.;

  • 授予单位 Marquette University.;
  • 学科 Engineering Electronics and Electrical.
  • 学位 M.S.
  • 年度 2011
  • 页码 71 p.
  • 总页数 71
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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