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基于互补环形螺旋谐振器的液体特性用高灵敏度微波传感器。

High-Sensitivity Microwave Sensor for Liquid Characterization Using a Complementary Circular Spiral Resonator.

机构信息

School of Electronic and Information Engineering, Beihang University, Beijing 100191, China.

Beijing Key Laboratory for Microwave Sensing and Security Applications, Beihang University, Beijing 100191, China.

出版信息

Sensors (Basel). 2019 Feb 15;19(4):787. doi: 10.3390/s19040787.

Abstract

This paper describes a low-cost, small size, and high-sensitivity microwave sensor using a Complementary Circular Spiral Resonator (CCSR), which operates at around 2.4 GHz, for identifying liquid samples and determining their dielectric constants. The proposed sensor was fabricated and tested to effectively identify different liquids commonly used in daily life and determine the concentrations of various ethanol⁻water mixtures at by measuring the resonant frequency of the CCSR. Using acrylic paint, a square channel was drawn at the most sensitive position of the microwave sensor to ensure accuracy of the experiment. To estimate the dielectric constants of the liquids under test, an approximate model was established using a High-Frequency Simulator Structure (HFSS). The results obtained agree very well with the existing data. Two parabolic equations were calculated and fitted to identify unknown liquids and determine the concentrations of ethanol⁻water mixtures. Thus, our microwave sensor provides a method with high sensitivity and low consumption of material for liquid monitoring and determination, which proves the feasibility and broad prospect of this low-cost system in industrial application.

摘要

本文描述了一种使用互补环形螺旋谐振器 (CCSR) 的低成本、小尺寸、高灵敏度微波传感器,该传感器工作在 2.4GHz 左右,用于识别液体样品并确定其介电常数。该传感器经过制造和测试,可通过测量 CCSR 的谐振频率,有效识别日常生活中常用的不同液体,并确定各种乙醇-水混合物的浓度。使用亚克力油漆在微波传感器的最敏感位置绘制一个方形通道,以确保实验的准确性。为了估计测试液体的介电常数,使用高频模拟器结构 (HFSS) 建立了一个近似模型。得到的结果与现有数据非常吻合。计算并拟合了两个抛物线方程,以识别未知液体并确定乙醇-水混合物的浓度。因此,我们的微波传感器为液体监测和确定提供了一种高灵敏度、低材料消耗的方法,证明了这种低成本系统在工业应用中的可行性和广阔前景。

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