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Distributed Temperature and Strain Discrimination with Stimulated Brillouin Scattering and Rayleigh Backscatter in an Optical Fiber

机译:光纤中受激布里渊散射和瑞利反向散射的分布式温度和应变鉴别

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A distributed optical fiber sensor with the capability of simultaneously measuring temperature and strain is proposed using a large effective area non-zero dispersion shifted fiber (LEAF) with sub-meter spatial resolution. The Brillouin frequency shift is measured using Brillouin optical time-domain analysis (BOTDA) with differential pulse-width pair technique, while the spectrum shift of the Rayleigh backscatter is measured using optical frequency-domain reflectometry (OFDR). These shifts are the functions of both temperature and strain, and can be used as two independent parameters for the discrimination of temperature and strain. A 92 m measurable range with the spatial resolution of 50 cm is demonstrated experimentally, and accuracies of ±1.2 °C in temperature and ±15 με in strain could be achieved.
机译:提出了一种具有同时测量温度和应变能力的分布式光纤传感器,该传感器使用具有亚米空间分辨率的大有效面积非零色散位移光纤(LEAF)。布里渊频移是使用具有差分脉宽对技术的布里渊光学时域分析(BOTDA)进行测量的,而瑞利背散射的光谱移位是使用光学频域反射法(OFDR)进行的。这些位移是温度和应变的函数,可以用作区分温度和应变的两个独立参数。实验证明了92 m的可测量范围和50 cm的空间分辨率,并且可以实现±1.2°C的温度精度和±15με的应变精度。

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