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Study on temperature sensing properties of different fiber Bragg grating at low temperature

机译:低温下不同光纤布拉格光栅的温度传感特性研究

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In this paper, in order to understand the fiber Bragg grating (FBG) sensor's temperature sensing properties with different coating materials and packaging materials at low temperature, and choose a FBG sensor for engineering application, an experimental platform is designed at first, the temperature sensing performance of five different type of FBG sensors at low temperature (77K–296K) is studied, and then the wavelength-temperature curve and temperature sensitive coefficient curve of these five FBG sensors is analyzed. At last, a nonlinear fitting for the best wavelength-temperature curve is made to provide a reference for practical application. It is concluded that polyimide-coated FBG sensor can be used normally at low temperature, and the temperature sensitive coefficient increases 4.32pm/K as reference to bare FBG, packaging has few effect on the sensor's performance of grating sensors. The OS4200 whose wavelength-temperature curve's cubic curve fitting is better than quadratic curve fitting has high accuracy and good stability, it can meet the requirement in practical engineering.
机译:为了了解光纤布拉格光栅(FBG)传感器在低温下具有不同涂层材料和包装材料的温度传感特性,并选择一种适合工程应用的FBG传感器,首先设计了一个实验平台,即温度传感研究了五个不同类型的FBG传感器在低温(77K–296K)下的性能,然后分析了这五个FBG传感器的波长-温度曲线和温度敏感系数曲线。最后,对最佳波长-温度曲线进行非线性拟合,为实际应用提供参考。结论:聚酰亚胺涂层的FBG传感器可以在低温下正常使用,相对于裸露的FBG,温度敏感系数提高4.32pm / K,封装对光栅传感器的性能影响不大。波长-温度曲线的三次曲线拟合优于二次曲线拟合的OS4200具有较高的精度和稳定性,可以满足实际工程的要求。

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