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基于椭圆芯双模光纤中布里渊动态光栅的光时域反射仪。

Optical time-domain reflectometry based on a Brillouin dynamic grating in an elliptical-core two-mode fiber.

作者信息

Kim Yong Hyun, Song Kwang Yong

出版信息

Opt Lett. 2017 Aug 1;42(15):3036-3039. doi: 10.1364/OL.42.003036.

Abstract

Optical time-domain reflectometry based on a Brillouin dynamic grating (BDG-OTDR) in an elliptical-core two-mode fiber (e-core TMF) is proposed and experimentally demonstrated for the discriminative measurement of strain and temperature distributions. Acoustic gratings are generated by the spontaneous Brillouin scattering of a pump pulse, which is used to reflect a probe pulse. Two orthogonal polarizations of the LP mode are sequentially used as the pump, while single polarization of the LP mode is used as the probe for intermodal BDG operation. Distribution maps of intermodal and polarization birefringence are acquired by analyzing the two BDG spectra, which are used to separately measure the temperature and strain distributions. In experiments, distributed measurement of intermodal BDG spectra along a 95 m e-core TMF is performed with a 2 m spatial resolution, where the strain and temperature coefficients of the BDG spectral shift are measured to be -0.085  MHz/με, +7.6  MHz/°C for the pump-probe of the LP01y-LP11x mode, and -0.093  MHz/με, +4.3  MHz/°C for the LP01x-LP11x mode, respectively. Distribution maps of the strain and temperature variation along the TMF are separately obtained by matrix calculation using the four coefficients with an error of ±105  με in strain and ±1.6°C in temperature.

摘要

本文提出并通过实验证明了一种基于椭圆芯双模光纤(e-core TMF)中布里渊动态光栅(BDG-OTDR)的光时域反射仪,用于应变和温度分布的判别测量。声学光栅由泵浦脉冲的自发布里渊散射产生,用于反射探测脉冲。LP模式的两个正交偏振依次用作泵浦,而LP模式的单偏振用作跨模BDG操作的探测。通过分析两个BDG光谱获取跨模和偏振双折射分布图,用于分别测量温度和应变分布。在实验中,以2米的空间分辨率对沿95米e-core TMF的跨模BDG光谱进行分布式测量,其中LP01y-LP11x模式的泵浦-探测的BDG光谱频移的应变和温度系数分别测量为-0.085 MHz/με、+7.6 MHz/°C,LP01x-LP11x模式的分别为-0.093 MHz/με、+4.3 MHz/°C。通过使用这四个系数进行矩阵计算,分别获得沿TMF的应变和温度变化分布图,应变误差为±105 με,温度误差为±1.6°C。

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