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用于婴儿监测应用的智能床单:测量与表征结果

Smart Bedsheet for Baby Monitoring Application: Measurement and Characterization Results.

作者信息

Munidasa Samal, Baghaei Parastoo, Shim Edward, Lin Olivia, Ghafar-Zadeh Ebrahim

出版信息

Annu Int Conf IEEE Eng Med Biol Soc. 2020 Jul;2020:4402-4405. doi: 10.1109/EMBC44109.2020.9176143.

Abstract

This paper describes a research collaboration with Studio 1 Labs to provide the characterization for a novel smart baby monitoring device which includes conductive fabrics. The electrical characterization of the conductive fabrics is important for designing a bedsheet that can adequately be sensitive to physiological movement. Electrical impedance spectroscopy (EIS) has been performed using the Metrohm Autolab potentiostat on a two-fabric interface. For an increase in applied weight, there was an overall decrease in impedance shown both in its real and imaginary components. A simple RC circuit model could be used to describe the system. A test bedsheet was made from a 3x3 conductive fabric matrix stitched into a cotton sheet. Conversely, an increase in resistance was observed from an increase in applied weights at the intersection points of the bedsheet. The following characterization provided useful insight into the future design of the smart bedsheet.

摘要

本文介绍了与1号工作室实验室的一项研究合作,旨在对一种包含导电织物的新型智能婴儿监测设备进行特性描述。导电织物的电学特性对于设计能够充分感知生理运动的床单至关重要。已使用万通Autolab恒电位仪在双织物界面上进行了电阻抗谱(EIS)测试。随着施加重量的增加,其电阻和电抗分量的阻抗总体上均呈现下降趋势。可以使用一个简单的RC电路模型来描述该系统。一个测试床单由一个3×3的导电织物矩阵缝入棉床单制成。相反,在床单的交叉点处,随着施加重量的增加,电阻也会增加。以下特性描述为智能床单的未来设计提供了有用的见解。

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