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Multiplexed optical fiber Fabry-Perot sensors for strain metrology

机译:用于应变计量的多路复用光纤法布里 - 珀罗传感器

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The authors demonstrate that several optical fiber Fabry-Perot sensors can be multiplexed in series for axial strain monitoring at each individual sensor. White light interferometry was employed using the laser-referenced Michelson interferometer of a standard Fourier transform spectrometer as a receiving (interrogating) interferometer. The primary aim was to demonstrate that at least six fiber Fabry-Perot transducer interferometers (sensors) can be multiplexed in series provided that each sensor has a unique optical cavity length within the multiplex. The resulting differing optical path differences at each fiber Fabry-Perot sensor give rise to sharp correlation features (side-bursts) at unique positions in the time domain as observed in the interferogram. An optical cavity length change due to an axial strain perturbation is observed as a change in the position in the time-domain of the side-burst feature associated with the fiber Fabry-Perot sensor. This paper demonstrates that multiplexed strain metrology in the quasi-static regime using fiber Fabry-Perot sensors is possible with a measurement range of typically 0 to 4000 microstrain and a strain resolution of better than 10 microstrain.
机译:作者表明,在每个单独的传感器处,可以串联多路复用几种光纤法布里 - 珀罗传感器以进行轴向应变监测。使用标准傅立叶变换光谱仪的激光参考的Michelson干涉仪作为接收(询问)干涉仪使用白色光干涉测量。主要目的是证明至少六个纤维的法布里 - 珀罗换能器干涉仪(传感器)可以串联多路复用,只要每个传感器在多路复用内具有独特的光学腔体。所得到的不同光学路径在每个光纤 - 珀罗传感器处的不同光路差异导致在干涉图中观察到的时域中的独特位置的鲜明相关特征(侧脉冲)。观察到由于轴向应变扰动引起的光学腔长变化作为与光纤法布里 - 珀罗传感器相关联的侧突发特征的时域的位置的位置的变化。本文演示了使用光纤法布里 - 珀罗传感器的准静电状态中的多路复用应变计量,其测量范围通常为0至4000微陶器和优于10微米的菌株。

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