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A Varactor-Tuned Frequency-Reconfigurable Fabric Antenna Embedded in Polymer: Assessment of Suitability for Wearable Applications

机译:嵌入聚合物中的变容频调谐频率可重新配置织物天线:可穿戴应用的适用性评估

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In this paper, we present a novel class of wearable antennas that are flexible, electronically tunable, and robust. They consist of conductive fabric parts, used as the radiator, with polydimethylsiloxane (PDMS) polymer utilized to form the substrate as well as the full encapsulation of the radiator including its electronic tuning elements. To validate the concept, a prototype that provides frequency tuning from 2.3 to 2.65 GHz has been fabricated and tested. The fabrication process is detailed and experimental investigations on its suitability for wearable applications are presented. To assess the antenna robustness, its reconfigurability under severe physical deformations has been studied through washing the antenna and also by wrapping it on the head and wrist of a UWB human muscle equivalent phantom. The antenna's effect on body has also been investigated through Specific Absorption Rate (SAR) measurement. The results confirm that the antenna is a promising candidate for modern wearable devices.
机译:在本文中,我们介绍了一种新颖的可穿戴天线,可柔性,电子调谐和稳健。它们由用作散热器的导电织物部件组成,具有用于形成基板的聚二甲基硅氧烷(PDMS)聚合物以及散热器的完全封装,包括其电子调谐元件。为了验证该概念,已经制造和测试了从2.3到2.65 GHz提供频率调谐的原型。提供了对可穿戴应用的适用性的详细和实验研究。为了评估天线稳健性,通过洗涤天线并通过将其缠绕在UWB人肌肉等效幽灵的头部和手腕上,研究了在严重的物理变形下的重新配置性。通过特定吸收率(SAR)测量还研究了天线对体内的影响。结果证实,天线是现代可穿戴设备的有希望的候选者。

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