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Metal-Polymer Hybrid Embroidered Microwave Multiresonator for High-Frequency Sensing: Modelling, Simulation, and Experimental Analysis

机译:用于高频传感的金属 - 聚合物杂交刺绣微波多谐波:建模,仿真和实验分析

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This paper presents a novel metal-polymer hybrid embroidered microwave ring multiresonator, which is implemented in a respiratory filter for high-frequency particle sensing. Metal-polymer multifilament fibres are the fundamental core for wearable technology, including bio-sensing textiles for use in healthcare and for electromagnetic shielding, which can be used in various applications. HFSS (ANSYS) was used for modelling a two-wire transmission ring multiresonator and an FEM based simulation was performed to analyze different coupling methods. Following this, the design and manufacture of the embroidered sensor is described. After that, a scatter analysis was made of the measured parameters from 2-8 GHz and the quality factors. In a case study, beech dust particles were used to load the respiratory filter to characterize the performance of the implemented ring multiresonator.
机译:本文介绍了一种新型金属 - 聚合物杂交刺绣微波环多空间,其在高频粒子传感的呼吸滤波器中实现。金属聚合物复丝纤维是可穿戴技术的基本核心,包括用于医疗保健和用于电磁屏蔽的生物传感纺织品,可用于各种应用。 HFSS(ANSYS)用于建模双线传输环多分辨器,并进行FEM基仿真以分析不同的耦合方法。在此之后,描述了绣花传感器的设计和制造。之后,散射分析由2-8 GHz的测量参数和质量因子制成。在一个案例研究中,使用山毛榉粉尘颗粒来装载呼吸过滤器,以表征实施的环多分器的性能。

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