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损耗电容式传感器测量系统:在食用油质量评估中的应用。

Measurement System for Lossy Capacitive Sensors: Application to Edible Oils Quality Assessment.

机构信息

Technische Universität Chemnitz, 09111 Chemnitz, Germany.

National Engineering School of Sfax, University of Sfax, 3038 Sfax, Tunisia.

出版信息

Sensors (Basel). 2019 Oct 4;19(19):4299. doi: 10.3390/s19194299.

Abstract

This paper aimed to develop a portable, low-cost, and easy-to-use measurement system for oil quality degradation assessment. The main two chemical parameters affected by frying are the total polar compounds (TPC) and free fatty acids. The system should characterize the change of chemical parameters by measuring the changes in its dielectric parameters. The dielectric parameters, relative permittivity, and conductivity are measured by measuring the capacitance and resistance of a capacitive sensor dipped in oil. The main challenges are that the corresponding changes of the capacitance and resistance are very small and the presence of stray effects. For this reason, the measurement system should be able to detect changes in capacitance and resistance with high resolution and with good immunity to stray effects. The proposed measurement system is based on the conversion of impedance to voltage and time and combining, therefore, having two measurement methods in one circuit. In this way, it is possible to measure the dielectric and resistive parameters and not only the relative permittivity as was done in previous works. The results showed a strong correlation between the chemical and electrical parameters with a coefficient of determination in the range of 0.9.

摘要

本论文旨在开发一种便携式、低成本且易于使用的测量系统,用于评估油质降解。受油炸影响的主要两个化学参数是总极性化合物(TPC)和游离脂肪酸。该系统应通过测量介电参数的变化来表征化学参数的变化。介电参数、相对介电常数和电导率通过测量浸在油中的电容传感器的电容和电阻来测量。主要挑战在于电容和电阻的相应变化非常小,而且存在杂散效应。因此,测量系统应该能够以高分辨率检测电容和电阻的变化,并具有良好的抗杂散效应能力。所提出的测量系统基于将阻抗转换为电压和时间并结合,因此在一个电路中具有两种测量方法。这样,就可以测量介电和电阻参数,而不仅仅是像以前的工作那样测量相对介电常数。结果表明,化学参数与电参数之间具有很强的相关性,决定系数在 0.9 范围内。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/81b7/6806179/0e9cbfb53a87/sensors-19-04299-g001.jpg

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