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Fiber-Optic Curvature Sensor Based on Cladding-Mode Bragg Grating Excited by Fiber Multimode Interferometer

机译:基于光纤多模干涉仪激励的包层布拉格光栅的光纤曲率传感器

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摘要

A sensing structure consisting of a short multimode fiber (MMF) spliced in just upstream of a uniform fiber Bragg grating (FBG) is proposed and experimentally demonstrated for temperature-independent curvature measurement. The short MMF section generates cladding modes in the fiber that contains the FBG. Several of these modes get reflected back by the FBG at shorter wavelengths and re-enter the launch fiber after passing through the MMF section. The net recoupling efficiency between the incident forward core mode and reflected cladding modes is -20 dB when the fiber is straight, but decays when a curvature applied on the sensing structure. A maximum sensitivity of 0.74 dB/m-1 is obtained in a large measurement range up to ~15.5 m-1, with no orientation dependence of the sensitivity. The reflected coupled power variation is measured to be ±0.15 dB over the temperature range from 0 to 70 °C, allowing for temperature-independent curvature measurements.
机译:提出了一种由短多模光纤(MMF)拼接在均匀光纤布拉格光栅(FBG)上游组成的传感结构,并通过实验证明了其与温度无关的曲率测量。短的MMF段会在包含FBG的光纤中生成包层模式。其中的几种模式在较短的波长下会被FBG反射回去,并在通过MMF部分后重新进入发射光纤。当光纤是笔直的时,入射正向纤芯模式和反射包层模式之间的净重耦合效率为-20 dB,但是当在传感结构上施加曲率时衰减。在高达〜15.5 m -1 的较大测量范围内,可获得0.74 dB / m -1 的最大灵敏度,而灵敏度与方向无关。在0至70°C的温度范围内,反射耦合功率变化的测量值为±0.15 dB,从而可以进行与温度无关的曲率测量。

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