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基于相敏光时域反射仪的分布式光纤传感中的温度-应变辨别

Temperature-strain discrimination in distributed optical fiber sensing using phase-sensitive optical time-domain reflectometry.

作者信息

Lu Xin, Soto Marcelo A, Thévenaz Luc

出版信息

Opt Express. 2017 Jul 10;25(14):16059-16071. doi: 10.1364/OE.25.016059.

Abstract

A method based on coherent Rayleigh scattering distinctly evaluating temperature and strain is proposed and experimentally demonstrated for distributed optical fiber sensing. Combining conventional phase-sensitive optical time-domain domain reflectometry (ϕOTDR) and ϕOTDR-based birefringence measurements, independent distributed temperature and strain profiles are obtained along a polarization-maintaining fiber. A theoretical analysis, supported by experimental data, indicates that the proposed system for temperature-strain discrimination is intrinsically better conditioned than an equivalent existing approach that combines classical Brillouin sensing with Brillouin dynamic gratings. This is due to the higher sensitivity of coherent Rayleigh scatting compared to Brillouin scattering, thus offering better performance and lower temperature-strain uncertainties in the discrimination. Compared to the Brillouin-based approach, the ϕOTDR-based system here proposed requires access to only one fiber-end, and a much simpler experimental layout. Experimental results validate the full discrimination of temperature and strain along a 100 m-long elliptical-core polarization-maintaining fiber with measurement uncertainties of ~40 mK and ~0.5 με, respectively. These values agree very well with the theoretically expected measurand resolutions.

摘要

提出了一种基于相干瑞利散射的用于分布式光纤传感的温度和应变清晰评估方法,并进行了实验验证。结合传统的相敏光时域反射仪(ϕOTDR)和基于ϕOTDR的双折射测量,沿着保偏光纤获得了独立的分布式温度和应变分布。理论分析和实验数据表明,所提出的温度-应变鉴别系统本质上比将经典布里渊传感与布里渊动态光栅相结合的等效现有方法具有更好的条件。这是由于相干瑞利散射比布里渊散射具有更高灵敏度,从而在鉴别中提供更好的性能和更低的温度-应变不确定性。与基于布里渊的方法相比,这里提出的基于ϕOTDR的系统仅需要接入一个光纤端,并且实验布局要简单得多。实验结果验证了沿100 m长的椭圆芯保偏光纤对温度和应变的完全鉴别,测量不确定度分别约为40 mK和~0.5 με。这些值与理论预期的测量分辨率非常吻合。

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