Electrotextile-Based Flexible Electromagnetic Skin for Wearables and Remote Monitoring

IF 6.9 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC IEEE journal of microwaves Pub Date : 2024-12-19 DOI:10.1109/JMW.2024.3504846
Rossella Rizzo;Giuseppe Ruello;Rita Massa;Maxim Zhadobov;Giulia Sacco
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Abstract

This paper presents a flexible electrotextile-based solid skin-equivalent phantom operating in the millimeter-wave (mmW) range. The phantom reproduces the reflection coefficient at the air/skin interface in the 55–65 GHz band. It is composed of a layer of carbon powder mixed with silicone and backed with an electrotextile. Its thickness is optimized to approach the target reflection coefficient of the human skin. For the angles of incidence from $0 ^{\circ}$ to $60 ^{\circ}$ the maximum relative error in respect to the target value is $2.6\%$ for the magnitude and $13\%$ for the phase when considering impinging transverse electric (TE) and transverse magnetic (TM) polarized plane wave. To experimentally validate the phantom, its scattering properties are measured in the 55–65 GHz range using a free-space transmission/reflection system. A good agreement between the numerical and experimental results is demonstrated, exhibiting a relative error within $1.9 \%$ for the magnitude of the reflection coefficient in the 55–65 GHz range at normal incidence. Such phantoms may be used in a wide range of body-centric mmW applications, including remote sensing and medical applications.
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用于可穿戴设备和远程监控的基于电纺织的柔性电磁皮肤
提出了一种工作在毫米波(mmW)范围内的柔性电织物固体等效皮肤模体。在55 - 65ghz频段内,仿真体再现了空气/皮肤界面处的反射系数。它由一层碳粉和硅树脂混合而成,背面是一层电子纺织品。其厚度被优化到接近人体皮肤的目标反射系数。在0 ^{\circ}$到60 ^{\circ}$的入射角范围内,当考虑到横向电(TE)和横向磁(TM)极化平面波的撞击时,相对于目标值的最大相对误差为幅度为$2.6\%$,相位为$13\%$。为了实验验证该模型,利用自由空间传输/反射系统在55-65 GHz范围内测量了其散射特性。计算结果与实验结果吻合良好,在55 ~ 65 GHz范围内,反射系数的相对误差在1.9%以内。这种幻影可广泛用于以人体为中心的毫米波应用,包括遥感和医疗应用。
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CiteScore
10.70
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0.00%
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审稿时长
8 weeks
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