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Simultaneous Measurement for Displacement and Temperature Using Fiber Bragg Grating Cladding Mode Based on Core Diameter Mismatch

机译:基于纤芯直径失配的光纤布拉格光栅包层模式同时测量位移和温度

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摘要

A novel fiber Bragg grating (FBG) sensing configuration for simultaneous measurements of temperature and displacement based on a core diameter mismatch is proposed and experimentally demonstrated. The configuration is formed by a short section of thin-core fiber (TCF) followed with a single-mode fiber (SMF) tip inscribed with an FBG. The TCF excites cladding modes into downstream SMF via the mismatch core splicing interface, and the low-order cladding modes can be reflected back to the fiber core via the FBG in which the recoupling efficiency is highly dependent on fiber bending. Experimental results show that the recoupled first-order odd mode (LP13) shows an extremely high sensitivity to fiber bending. The simultaneous measurements, including power-referenced for displacement and wavelength-referenced for temperature, have been achieved via selective cladding modes monitoring.
机译:提出了一种新颖的光纤布拉格光栅(FBG)传感配置,用于基于纤芯直径不匹配的温度和位移同时测量。该配置由一小段细芯光纤(TCF)和紧接FBG的单模光纤(SMF)尖端组成。 TCF通过不匹配纤芯熔接接口将包层模式激发到下游SMF中,低阶包层模式可以通过FBG反射回光纤芯,其中FBG的重新耦合效率高度依赖于光纤弯曲。实验结果表明,重新耦合的一阶奇数模(LP 13 )对光纤弯曲具有极高的灵敏度。通过选择性包层模式监控,可以同时进行测量,包括以功率为参考的位移和以波长为参考的温度。

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