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Analytical modeling of a coaxial cylindrical probe capacitive sensor based on MATLAB/Simulink for conductive liquids level measurements

机译:基于MATLAB / Simulink的同轴圆柱探头电容式传感器用于导电液位测量的分析模型

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Measurement of liquid level is an important process variable in the operation of many process industries such as water treatment plants. There are different types of level sensors to measure this parameter, categorized into ultrasonic, capacitive, optical, microwave, magnetostrictive, resistive chain, magnetoresistive, hydrostatic pressure, air bubbler, gamma ray, etc. In this paper, a cylindrical probe capacitive sensor for measuring the level of conductive liquids has been modeled based on a step-by-step mathematical procedure, using MATLAB/Simulink. The steps take the relation between the different capacitances in the model with the height of the conductive liquid into account. The results show a linearity function between the sensor capacitance from 0.1 to 1.1 nF versus the height of liquid from 0 to 90 cm. In order to have a standardized instrumentation output, a signal conditioning circuit was designed to achieve an output current of 4-20 mA, representing the sensor capacitance, and the response of the sensor in terms of current to different heights of liquid was characterized.
机译:在许多过程工业(例如水处理厂)的操作中,液位的测量是重要的过程变量。有多种类型的液位传感器可测量此参数,分为超声波,电容,光学,微波,磁致伸缩,电阻链,磁阻,静水压力,气泡,伽马射线等。已经使用MATLAB / Simulink基于逐步的数学过程对测量导电液体的液位进行了建模。这些步骤考虑了模型中不同电容与导电液体高度之间的关系。结果表明,传感器电容从0.1到1.1 nF与液体高度从0到90 cm之间呈线性关系。为了获得标准化的仪器输出,设计了一个信号调理电路,以实现代表传感器电容的4-20 mA输出电流,并表征了传感器对不同高度液体的电流响应。

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