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Fiber grating type dependence of temperature and strain coefficients and application to simultaneous temperature and strain measurement

机译:光纤光栅类型对温度和应变系数的依赖性及其在同时进行温度和应变测量中的应用

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Although fiber Bragg gratings (FBGs) have been widely used as advanced optical sensors, the cross-sensitivity between temperature and strain has complicated independent measurement procedures for these two measurands. We report here, for the first time to our knowledge, the results of a systematic investigation of the dependence of both temperature and strain sensitivities on the grating type, including the well-known Type I, Type IIA, and a new type which we have designated Type IA, using both hydrogen-free and hydrogenated B/Ge codoped fibers. We have identified distinct sensitivity characteristics for each grating type, and we have utilised them to implement a novel dual-grating, dual-parameter sensor device with performance superior to that of previously reported grating-based structures.
机译:尽管光纤布拉格光栅(FBG)已被广泛用作高级光学传感器,但温度和应变之间的交叉敏感度使这两个被测物的测量程序变得很复杂。我们在此首次报告我们的知识,系统地研究了温度和应变敏感性对光栅类型的依赖性,包括众所周知的I型,IIA型和我们拥有的新型使用无氢和氢化的B / Ge共掺杂纤维表示为IA型。我们已经为每种光栅类型确定了不同的灵敏度特性,并且我们利用它们来实现一种新型的双光栅双参数传感器设备,其性能要优于以前报道的基于光栅的结构。

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