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Artificial magnetic conductor integrated textile monopole antenna.

机译:人造磁导体集成纺织单极天线。

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摘要

Wearable antenna is a fast growing field in application-oriented research, which introduced a new generation of garments capable of monitoring wear health, as well as environmental states. This thesis is concerned with the design and fabrication of a compact textile wearable antenna at operating frequency within the Industrial, Scientific and Medical (ISM) band, intended for integration into a flight jacket of the astronaut inside the habitat. The antenna is integrated with artificial material known as High Impedance Surface (HIS) for performance enhancement. The purpose of the system is to constantly monitor vital signals of the astronauts.;The entire design cycle of wearable Co-Planar Waveguide (CPW) fed monopole antenna, starting from simulation-based design to fabricated prototype and antenna testing under different conditions was carried out in this thesis. Because of the lossy nature of human body tissues, the radiation efficiency of the antenna will be reduced due to the absorption of the radiated energy. Hence, changes in the radiation characteristics of the wearable antenna like operating frequency, gain and impedance bandwidth will take place. To overcome these challenges, HIS has been suggested and integrated with the monopole antenna to isolate the antenna from the ambient environments. This wearable antenna was tested under real operating conditions such as bending and crumpling conditions.;Moreover, as the antenna operates near human body tissues, Specific Absorption Rate (SAR) assessment is required to consider the safety concerns of the antenna system. SAR analysis based on simulation results has been carried out in this thesis to show a significant reduction in SAR with the usage of HIS in the antenna system.
机译:可穿戴天线是面向应用的研究领域中一个快速发展的领域,该领域推出了能够监测穿戴健康以及环境状态的新一代服装。本文涉及在工业,科学和医学(ISM)频段内以工作频率工作的紧凑型纺织品可穿戴天线的设计和制造,该天线旨在集成到居住环境中的宇航员飞行夹克中。天线与称为高阻抗表面(HIS)的人造材料集成在一起,以提高性能。该系统的目的是不断监测宇航员的生命信号。可穿戴式共面波导馈电单极天线的整个设计周期,从基于仿真的设计到制造的原型,并在不同条件下进行天线测试,在这篇论文中。由于人体组织的有损特性,由于吸收了辐射能,天线的辐射效率将降低。因此,可穿戴天线的辐射特性会发生变化,例如工作频率,增益和阻抗带宽。为了克服这些挑战,已建议使用HIS并将其与单极天线集成以将天线与周围环境隔离。这款可穿戴天线在真实的工作条件(例如弯曲和折皱条件)下进行了测试。此外,由于天线在人体组织附近工作,因此需要进行比吸收率(SAR)评估,以考虑天线系统的安全性。本文基于仿真结果进行了SAR分析,结果表明在天线系统中使用HIS可以显着降低SAR。

著录项

  • 作者

    Alemaryeen, Ala Ali.;

  • 作者单位

    The University of North Dakota.;

  • 授予单位 The University of North Dakota.;
  • 学科 Electromagnetics.;Electrical engineering.
  • 学位 M.S.
  • 年度 2015
  • 页码 118 p.
  • 总页数 118
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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