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Liquid Level Measurement Based on FBG-Embedded Diaphragms With Temperature Compensation

机译:基于带温度补偿的FBG嵌入式膜片的液位测量

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摘要

This paper proposes a fiber optic liquid level sensor system based on a silica fiber Bragg grating embedded into an epoxy resin diaphragm coupled to a temperature reference sensor, used to compensate the temperature cross-sensitivity for improving the liquid level measurement accuracy. The proposed system was tested in an industrial water tank with heating and recirculation. The results demonstrated a temperature cross-sensitivity reduction, enhancing the liquid level measurement thermal stability by a factor of nine, when compared with some single head sensor configurations reported in literature. Our system presents high linearity (R>0.999 ), superior sensitivity (2.8 pm/mm), and much lower temperature related error (1.04 mm/°C), when compared with the other diaphragm-based sensors recently reported in the literature.
机译:本文提出了一种基于石英纤维布拉格光栅的光纤液位传感器系统,该系统嵌入与温度基准传感器耦合的环氧树脂膜片中,用于补偿温度交叉敏感度,从而提高液位测量精度。该系统在带有加热和再循环功能的工业水箱中进行了测试。结果表明,与文献报道的某些单头传感器配置相比,温度交叉敏感度降低,液位测量热稳定性提高了九倍。与最近在文献中报道的其他基于膜片的传感器相比,我们的系统具有高线性度(R> 0.999),出色的灵敏度(2.8 pm / mm)和更低的温度相关误差(1.04 mm /°C)。

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