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用于沉积物密度表征的谐振微波传感器的研制。

Development of a Resonant Microwave Sensor for Sediment Density Characterization.

作者信息

Mansour R, Rioual S, Lescop B, Talbot P, Abboud M, Farah W, Tanné G

机构信息

IFREMER, REM-GM-LAD, 29280 Plouzane, France.

Univ Brest, Lab-STICC, CNRS, UMR 6285, F-29200 Brest, France.

出版信息

Sensors (Basel). 2020 Feb 15;20(4):1058. doi: 10.3390/s20041058.

Abstract

In this study, a sensor based on the development of a planar antenna immersed in sediments dedicated to water content monitoring in this type of material is proposed and experimentally validated. It is produced by a conventional Printed Circuit Board (PCB) manufacturing process on a double-sided metalized FR4 substrate. The sensitivity of the sensor is ensured by the variation of the real part of the complex dielectric permittivity of sediments with water content at around 1 GHz. As shown, in this frequency range, electrode polarization and Maxwell-Wagner polarization effects become negligible, leading to only a bulk water polarization sensitivity. The sensor operates in the reflection mode by monitoring the variation of the resonant frequency as a function of the sediment density through the S reflection measurements. An experimental sensitivity of 820   MHz . g - 1 . cm 3 was achieved. Despite the simplification of data interpretation at the considered frequency, the influence of ionic species such as NaCl in sediments on the real part of the relative complex dielectric permittivity is highlighted. This demonstrates the importance of considering a second parameter such as the S level at low frequency or the electrical conductivity to extract the density from the frequency measurements.

摘要

在本研究中,提出了一种基于平面天线开发的传感器,该天线浸没在沉积物中,用于监测此类材料中的含水量,并进行了实验验证。它是通过传统的印刷电路板(PCB)制造工艺在双面金属化的FR4基板上生产的。传感器的灵敏度由沉积物复介电常数实部随含水量在1GHz左右的变化来保证。如图所示,在该频率范围内,电极极化和麦克斯韦-瓦格纳极化效应可忽略不计,仅导致体水极化灵敏度。该传感器通过监测谐振频率随沉积物密度的变化,通过S反射测量以反射模式工作。实现了820 MHz·g-1·cm3的实验灵敏度。尽管在所考虑的频率下简化了数据解释,但沉积物中诸如NaCl等离子种类对相对复介电常数实部的影响仍很突出。这表明考虑第二个参数(如低频下的S电平或电导率)以从频率测量中提取密度的重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3af8/7070468/5ce46d13babd/sensors-20-01058-g001.jpg

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