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Design and implementation of broad band and narrow band antennas and their applications.

机译:宽带和窄带天线的设计与实现及其应用。

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摘要

The thesis deals with the design and implementation of broadband and narrowband antennas and their applications in practical environment. In this thesis, a new concept for designing the UWB antenna is proposed based on the CRLH metamaterials and this UWB antenna covers a frequency range from 2.45 GHz to 11.6 GHz. Based on the design of the UWB antenna, another antenna is developed that can cover a very wide bandwidth i.e from 0.66 GHz to 120 GHz. This antenna can not only be used for UWB applications but also for other communication systems working below the UWB spectrum such as GSM, GPS, PCS and Bluetooth. The proposed antenna covering the bandwidth from 0.66 GHz to 120 GHz is by far the largest bandwidth antenna developed based on metamaterials. Wide band antennas are not preferred for sensing purpose as it is difficult to differentiate the received signals. A multiband antenna which can be used as a strain sensor for structural health monitoring is proposed. The idea is to correlate the strain applied along the length or width with the multiple resonant frequencies. This gives the advantage of detecting the strain applied along any direction (either length or width), thus increasing the sensing accuracy. Design and application of a narrow-band antenna as a temperature sensor is also presented. This sensor can be used to detect very high temperature changes (>1000°C). This sensor does not require a battery, can be probed wirelessly, simple and can be easily fabricated, can withstand harsh environmental conditions.
机译:本文主要研究宽带和窄带天线的设计与实现及其在实际环境中的应用。本文提出了一种基于CRLH超材料的UWB天线设计新概念,该UWB天线的频率范围为2.45 GHz至11.6 GHz。基于UWB天线的设计,开发了另一种天线,其可以覆盖非常宽的带宽,即从0.66 GHz到120 GHz。该天线不仅可以用于UWB应用,还可以用于在UWB频谱以下工作的其他通信系统,例如GSM,GPS,PCS和蓝牙。提议的天线覆盖从0.66 GHz到120 GHz的带宽,是迄今为止基于超材料开发的最大带宽天线。宽带天线不是优选的用于感测目的,因为很难区分接收到的信号。提出了一种可用作结构健康监测的应变传感器的多频带天线。想法是使沿长度或宽度施加的应变与多个共振频率相关。这具有检测沿任何方向(长度或宽度)施加的应变的优势,从而提高了感应精度。还介绍了窄带天线作为温度传感器的设计和应用。该传感器可用于检测非常高的温度变化(> 1000°C)。该传感器不需要电池,可以无线探测,简单,易于制造,可以承受恶劣的环境条件。

著录项

  • 作者

    Salmani, Zeeshan.;

  • 作者单位

    University of North Texas.;

  • 授予单位 University of North Texas.;
  • 学科 Engineering Electronics and Electrical.
  • 学位 M.S.
  • 年度 2011
  • 页码 49 p.
  • 总页数 49
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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