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通过谐振天线结构实现温度传感的非导电织物的介电特性分析

Dielectric Characterization of Non-Conductive Fabrics for Temperature Sensing through Resonating Antenna Structures.

作者信息

Ibanez-Labiano Isidoro, Alomainy Akram

机构信息

School of Electronic Engineering and Computer Science, Queen Mary University of London, London E1 4NS, UK.

出版信息

Materials (Basel). 2020 Mar 11;13(6):1271. doi: 10.3390/ma13061271.

Abstract

Seamless integration of electronics within clothing is key for further development of efficient and convenient wearable technologies. Therefore, the characterization of textile and fabric materials under environmental changes and other parametric variations is an important requirement. To our knowledge, this paper presents for the first time the evaluation of dielectric characterization over temperature for non-conductive textiles using resonating structures. The paper describes the effects of temperature variations on the dielectric properties of non-conductive fabrics and how this can be derived from the performance effects of a simple microstrip patch antenna. Organic cotton was chosen as the main substrate for this research due to its broad presence in daily clothing. A dedicated measurement setup is developed to allow reliable and repeatable measurements, isolating the textile samples from external factors. This work shows an approximately linear relation between temperature and textile's dielectric constant, giving to fabric-based antennas temperature sensing properties with capability up to 1 degree Celsius at millimeter-wave frequencies.

摘要

电子器件与服装的无缝集成是高效便捷可穿戴技术进一步发展的关键。因此,表征纺织面料材料在环境变化及其他参数变化下的特性是一项重要要求。据我们所知,本文首次提出了利用谐振结构对非导电纺织品在温度范围内进行介电特性评估。本文描述了温度变化对非导电织物介电性能的影响,以及如何从一个简单微带贴片天线的性能效应中推导得出这种影响。由于有机棉在日常服装中广泛存在,因此被选为这项研究的主要基材。开发了一种专用测量装置,以实现可靠且可重复的测量,使纺织样品与外部因素隔离开来。这项工作表明温度与纺织品介电常数之间存在近似线性关系,赋予基于织物的天线温度传感特性,并在毫米波频率下具备高达1摄氏度的温度传感能力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c7df/7142631/fca66adb844e/materials-13-01271-g001.jpg

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