A novel method to detect the liquid level based on the FBG sensor Part I: The structure design and performance analysis

Mingyao Liu, Yubin Wu, Zechao Wang, Changrao Du, Zude Zhou
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Abstract

This paper proposes a novel method to detect the liquid level. Specifically, a novel structure based on the diagram and the flexible hinge is presented, in which the Fiber Bragg Grating (FBG) is employed as the sensing element and temperature compensation is considered. The corresponding analytical model of the structure is developed, which shows that the strain of the FBG is a linear correlation with the liquid level. The presented sensor show superior range (±200mm) and superior sensitivity (23.80pm/mm) when compared with some of the similar structures shown in the literature. To validate the analytical model, a Finite Element Model (FEM) is employed and the results showed that the analytical model is accurate. This paper aims to give the structure design and performance analysis for the sensor and the corresponding experiments will be given in our subsequent paper series Part II.
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一种基于光纤光栅传感器的液位检测新方法。第一部分:结构设计与性能分析
提出了一种新的液位检测方法。具体而言,提出了一种基于柔性铰链的新型结构,该结构采用光纤光栅作为传感元件,并考虑温度补偿。建立了相应的结构解析模型,表明光纤光栅的应变与液位呈线性相关。与文献中显示的一些类似结构相比,该传感器具有优越的量程(±200mm)和优越的灵敏度(23.80pm/mm)。为了验证解析模型的正确性,采用有限元模型对解析模型进行了验证,结果表明解析模型是准确的。本文的目的是给出传感器的结构设计和性能分析,相应的实验将在我们后续的论文系列第二部分中进行。
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