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Temperature-Compensated Microstrip Antenna for Ice Measurement and Wireless Sensor Network

机译:用于冰测量和无线传感器网络的温度补偿微带天线

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摘要

The primary goal of this thesis is to devise and develop a technique of temperature compensation related to the resonant frequency of a microstrip patch antenna (MPA). Such a temperaturecompensated microstrip patch antenna capable of standing against a substantial variation of temperature is exploited as part of an ice-sensor for measuring ice loading thickness. Microstrip antennas designed in this way are used in a wireless temperature sensor network in connection with its critical applications of a helicopter de-icing system. A prototype of wireless temperature sensor network which remotely controls turning-on or turning-off heaters intended for de-icing is developed. Among all other antennas, the microstrip antenna is selected due to its versatility. Thanks to the susceptibility of the microstrip patch antenna to external factors, such as temperature fluctuations, its resonant frequency suffers from a stability issue. In addition to that, its resonance causing a narrow frequency bandwidth does not lead to a straightforwardly preferred solution. To minimize the temperature-induced frequency instability and also to prevent losing signal or interferences from adjacent channels, one needs to develop a very efficient and practical temperature compensation technique.;In this work, an efficient and practical technique through a resonant frequency temperature compensation for microstrip patch antennas is devised, which is superior to existing counterparts both in its simplicity and frequency stability. To the best of the author`s knowledge, nothing similar was done before.;For the first time, a temperature dependence of microstrip antenna resonant frequency is investigated through a mathematical formulation of frequency drift for rectangular, circular, and triangular patch geometries. The circuit model for analyzing temperature impact on microstrip antenna resonant frequency suitable for computer-aided design (CAD) procedures is adopted. Electromagnetic simulations along with results of the adopted circuit model support the derived theory. Results of temperature impact on the frequency drift of microstrip antennas resonant at 2.4 GHz modelled on different substrates are shown and compared. Analysis, simulation, and experimental results show that antennas built on thicker substrates exhibit a better temperature behaviour of the resonant frequency.
机译:本文的主要目的是设计和开发一种与微带贴片天线(MPA)的谐振频率相关的温度补偿技术。这种能够抵御温度的实质变化的温度补偿微带贴片天线被用作用于测量冰负载厚度的冰传感器的一部分。以这种方式设计的微带天线与直升机除冰系统的关键应用一起用于无线温度传感器网络。开发了无线温度传感器网络的原型,该网络可远程控制打算除冰的加热器的开/关。在所有其他天线中,由于其多功能性而选择了微带天线。由于微带贴片天线对诸如温度波动之类的外部因素的敏感性,其谐振频率遭受稳定性问题的困扰。除此之外,其谐振引起窄的频率带宽不会导致直接优选的解决方案。为了最大程度地降低温度引起的频率不稳定性并防止信号丢失或相邻信道的干扰,需要开发一种非常有效且实用的温度补偿技术。设计了微带贴片天线,其简单性和频率稳定性均优于现有同类产品。据作者所知,之前没有做过任何类似的工作。首次,通过对矩形,圆形和三角形贴片几何形状的频率漂移进行数学公式研究了微带天线谐振频率的温度依赖性。采用适用于计算机辅助设计(CAD)程序的温度模型来分析温度对微带天线谐振频率的影响。电磁仿真以及采用的电路模型的结果均支持推导理论。显示并比较了温度对在2.4 GHz上谐振的微带天线在不同基板上建模的频率漂移的影响结果。分析,仿真和实验结果表明,在较厚的基板上构建的天线表现出更好的谐振频率温度特性。

著录项

  • 作者

    Zivanovic, Marko.;

  • 作者单位

    Ecole Polytechnique, Montreal (Canada).;

  • 授予单位 Ecole Polytechnique, Montreal (Canada).;
  • 学科 Electrical engineering.
  • 学位 M.A.Sc.
  • 年度 2018
  • 页码 119 p.
  • 总页数 119
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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