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Effect of Protective Coating on the Performance of Wearable Antennas

机译:保护涂层对可穿戴天线性能的影响

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摘要

Current smart clothing faces challenges due to discomfort provided by some technological components. A wireless body area network using inductively coupled fabric antennas is suggested as one of the solutions to overcome this. Different types of fabric substrates (denim, broadcloth, and jersey) and protective coating (acrylic resin, polyurethane, and silicone) were selected and engineered to optimize the antenna performance - in terms of mechanical and electrical properties. Experimental results show that protective coating affects almost every mechanical property very significantly. Resistance of the antenna was recorded lowest on the polyurethane-coated antennas and inductance was minimized on the broadcloth substrates. Recognizing a trade-off between electrical performance and comfort, this research looks at ways to optimize the overall usability.
机译:由于某些技术组件带来的不适,当前的智能服装面临挑战。建议使用感应耦合结构天线的无线人体局域网作为解决此问题的解决方案之一。选择了不同类型的织物基材(牛仔布,宽布和针织物)和保护性涂层(丙烯酸树脂,聚氨酯和有机硅),并进行了设计,以优化天线的性能-就机械和电气性能而言。实验结果表明,防护涂层几乎可以显着影响几乎所有的机械性能。在涂聚氨酯的天线上,天线的电阻记录为最低,而在宽布基底上的电感则最小。认识到电气性能和舒适性之间的权衡,这项研究着眼于优化整体可用性的方法。

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