用带法布里-珀罗腔的偏心芯光纤布拉格光栅同时测量温度和弯曲度

Y. Ouyang, Jing Kong, Yimin Xu, Ai Zhou, Libo Yuan
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引用次数: 2

摘要

提出并演示了一种基于偏心芯光纤布拉格光栅(ECFBG)级联法布里-珀罗腔的温度弯曲传感器。该混合结构由一段中空芯光纤夹在一段多模光纤和一个ECFBG之间组成。在两个相反的最敏感方向上,ECFBG的曲率灵敏度分别为52.2 pm/m−1和- 51.7 pm/m−1,FPI的曲率灵敏度分别为58.6pm/m−1和- 61.4 pm/m−1。这两个部件的温度灵敏度差别很大。ECFBG的温度灵敏度为10.3 pm/°c, FPI的温度灵敏度低至0.7 pm/°c。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Simultaneous measurement of temperature and bend by using an eccentric core fiber Bragg grating cascaded with a Fabry-Perot cavity
A simultaneous temperature and bend sensor based on an eccentric core fiber Bragg grating (ECFBG) cascaded with a Fabry-Perot cavity is presented and demonstrated. The hybrid structure is composed of a piece of hollow core fiber, which is sandwiched in between a piece of multimode fiber and an ECFBG. The curvature sensitivities of the ECFBG at the two opposite most sensitive directions are 52.2 pm/m−1 and −51.7 pm/m−1 respectively, and those of the FPI are 58.6pm/m−1 and −61.4 pm/m−1, respectively. The temperature sensitivities of the two parts are very different. The temperature sensitivity of the ECFBG is 10.3 pm/°c, and that of the FPI is as low as 0.7 pm/°c.
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