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Electrical Properties of Human Tissues Applied to Wearable Antenna Design

机译:人体组织的电学特性在可穿戴天线设计中的应用

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摘要

A method for designing wearable antennas at microwave frequencies is presented in this thesis. An antenna placed on the human body is heavily influenced by the electrical properties of tissues. Thus, the proposed method includes of the development of mixtures that mimic the electrical properties of human tissues in order to validate the antenna designs. Simulation of several printed antennas in the presence of tissues are performed and analyzedThe work outlines the process of developing phantom tissues and their validation using an open-ended coaxial probe method. A guide-wave permittivity measurement method and a free space measurement method are also discussed. The results show lower values than expected for the complex permittivity compared to those previously published. Some reasons for the discrepancy are suggested.Two prototype antennas are developed: a rectangular patch antenna and a dipole. A layered stack model of tissues is compared to a simpler and computationally more efficient half space model. The effect of the separation between the antenna and the tissues, the bending of tissues and the variation of tissue electrical characteristics are analyzed and quantified. The separation or bending of the tissues greatly influence the performance of the antenna, as expected.
机译:本文提出了一种在微波频率下设计可穿戴天线的方法。放置在人体上的天线在很大程度上受到组织电学特性的影响。因此,提出的方法包括开发模仿人体组织电特性的混合物,以验证天线设计。在存在组织的情况下对几个印刷天线进行了仿真,并进行了分析。该工作概述了幻影组织的发育过程以及使用开放式同轴探针方法进行的验证。还讨论了波导介电常数的测量方法和自由空间的测量方法。结果显示,与先前公布的结果相比,复介电常数的值低于预期。提出了一些差异的原因。开发了两种原型天线:矩形贴片天线和偶极天线。将组织的分层堆栈模型与更简单,计算效率更高的半空间模型进行比较。分析和量化了天线与组织之间的分离效果,组织的弯曲以及组织电特性的变化。如预期的那样,组织的分离或弯曲极大地影响了天线的性能。

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    Palomer Ripoll Xavier;

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  • 年度 2012
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