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Fundamental Characteristics of Electro-Textiles in Wearable UHF RFID Patch Antennas for Body-Centric Sensing Systems

机译:用于人体感应系统的可穿戴UHF RFID贴片天线中电纺织品的基本特性

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Electro-textiles feature excellent radio frequency (RF) performance. They have an enormous potential to be widely accepted in body-centric sensing systems as wearable antenna materials. However, the RF community lacks comprehensive knowledge of electro-textile fundamental characteristics. This paper provides critical electro-textile design parameters for wearable radio frequency identification (RFID) ultra-high-frequency (UHF) patch antennas. For the first time, modeling parameters for embroidered antenna ground plane and patch structures are established and verified. The results highlight a new unprecedented fundamental characteristic of embroidered antennas: all embroidered structures, modeled as uniform and infinitely thin textile layer, have an existing imaginary part in their sheet impedance modeling parameter. It accounts for the antenna input inductance contributed from the electro-textile. Ideally, such as for highly conductive fabrics and pure conductors, the imaginary part is negligible. Utilizing the proposed design guidelines, a fully wearable and flexible embroidered RFID patch antenna is for the first time realized. Its performance may be considered as a benchmark for future designs. The design parameters and findings form an important milestone in the development towards wearable intelligence and foster industrial developments of garment-integrated RFID antennas.
机译:电子纺织品具有出色的射频(RF)性能。它们具有巨大的潜力,可以作为可穿戴天线材料在人体中心感应系统中被广泛接受。但是,射频界缺乏对电子纺织品基本特征的全面了解。本文为可穿戴式射频识别(RFID)超高频(UHF)贴片天线提供了关键的电子纺织设计参数。首次建立并验证了绣花天线接地平面和贴片结构的建模参数。结果凸显了绣花天线的一个前所未有的新的基本特性:所有绣花结构均建模为均匀且无限薄的纺织层,其薄层阻抗建模参数中已有虚部。它解释了电纺织物对天线输入电感的影响。理想情况下,例如对于高导电性织物和纯导体,虚部可以忽略不计。利用拟议的设计指南,首次实现了完全可穿戴且灵活的刺绣RFID贴片天线。它的性能可以作为将来设计的基准。设计参数和发现是朝着可穿戴智能发展的重要里程碑,并促进了服装集成RFID天线的工业发展。

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