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Single layered periodic structure loaded textile patch antennas.

机译:单层周期性结构加载纺织贴片天线。

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摘要

This thesis provides an investigation of a Single Layered Periodic Structure Loaded Textile Patch Antenna with probe feed excitation. Specifically, this thesis is concentrated on the application of wearable antenna arrays with space suit, since this thesis has collaboration with the University of North Dakota (UND) Space Suit Laboratory in the Space Studies Department. Topics include; platform interaction and placement of the antenna system. The goal is to increase antenna gain by loading the antenna with periodic cells. First, an introduction to items contained within this thesis will be given. The second chapter introduces microstrip patch antennas, their basic characteristics, and their feeding excitation methods. Continuing with microstip patch antennas, and how they are viewed with their fringing field effects. Then the theoretical designs of the physical dimensions of a patch antenna relative to its electrical length are included. This part then ends with a basic introduction to periodic structures, namely Electromagnetic Band Gap (EBG) structures.;The third chapter covers wearable antennas, with and without periodic structures, and their applications. A review of surface waves and wave modes is given. This review produces a picture of how this once un-utilized energy (i.e. surface waves) can be recycled and reused to benefit positively increased gain. This can be accomplished by use of periodic structures loaded with the antenna. The fourth chapter covers the material, manufacturing, assembling, and measuring processes of textile antennas. This range of processes is journeyed as a joint collaboration between UNDs Electrical Engineering Department's Applied Electromagnetics Laboratory, and the Technology Department's Machine Shop.;Lastly, simulation and design of a periodic loaded patch antenna are analyzed. This begins by first designing and simulating a free standing periodic cell coined "C-mirror". The simulation results for reflection and dispersion characteristics are given. A 1 GHz antenna with specifications of textile material was designed. Once this antenna was realized, it was then loaded uni-planar with periodic cells with no vias. Experiments included varying the orientation, number of rows, and the placement of the cells with respect to the antenna. It was found that the Up-Down (UD) orientation with 2 rows and lambdao/12 placement demonstrated the greatest increase in gain. Furthermore, surface currents were seen to interact with the periodic cells. It could be seen that the arrangement of the cells adapted a network internally with the current flowing through the cells obtaining an inductive behavior and the capacitive behavior occurred between the cells stubs as well as between the cells defined by the Periodic Boundary Conditions (PBC). This surface current behavior, with the orientation of the periodic array with no vias became known as a "Uni-Planar Parasitic Loaded Patch Antenna".
机译:本文提供了一种带有探针馈电激励的单层周期结构加载纺织品贴片天线的研究。具体而言,由于与北达科他大学(UND)太空研究室的太空服实验室合作,因此本论文着重于可穿戴天线阵列与太空服的应用。主题包括;平台相互作用和天线系统的放置。目的是通过向天线加载周期性的小区来增加天线增益。首先,将对本文所包含的项目进行介绍。第二章介绍了微带贴片天线,其基本特性及其馈电激励方法。继续介绍微尖贴片天线,以及如何通过边缘场效应观看它们。然后包括贴片天线相对于其电长度的物理尺寸的理论设计。然后,本部分从基本介绍周期结构开始,即电磁带隙(EBG)结构。第三章介绍了具有和不具有周期结构的可穿戴天线及其应用。综述了表面波和波模。这篇评论对如何将曾经未利用过的能量(即表面波)进行回收利用进行了描述,从而使收益得到了积极的提高。这可以通过使用装有天线的周期性结构来实现。第四章介绍了纺织天线的材料,制造,组装和测量过程。在UNDs电气工程部的应用电磁实验室和技术部的机械车间之间的联合协作中,该过程的范围得到了探索;最后,分析了周期性负载贴片天线的仿真和设计。首先要设计和模拟一个独立的周期电池,称为“ C镜”。给出了反射和色散特性的仿真结果。设计了一种具有纺织材料规格的1 GHz天线。一旦实现了该天线,就可以将其单平面加载到没有过孔的周期单元中。实验包括改变方向,行数以及单元相对于天线的位置。发现具有2行和lambdao / 12放置的Up-Down(UD)方向显示出增益的最大增加。此外,发现表面电流与周期细胞相互作用。可以看出,单元的布置在内部适应了网络,流过单元的电流获得了感应行为,并且在单元桩之间以及由周期性边界条件(PBC)定义的单元之间发生了电容行为。这种表面电流行为以及没有过孔的周期性阵列的方向被称为“单平面寄生负载贴片天线”。

著录项

  • 作者

    Bergsrud, Corey A. M.;

  • 作者单位

    The University of North Dakota.;

  • 授予单位 The University of North Dakota.;
  • 学科 Engineering Electronics and Electrical.
  • 学位 M.S.
  • 年度 2012
  • 页码 112 p.
  • 总页数 112
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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