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Low-Loss Random Fiber Gratings Made With an fs-IR Laser for Distributed Fiber Sensing

机译:使用fs-IR激光器制造的低损耗随机光纤光栅,用于分布式光纤传感

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摘要

By using the plane-by-plane grating inscription method with an fs-IR laser, random fiber gratings with low laser-induced loss were fabricated in SMF-28 fiber for distributed temperature sensing. Compared to conventional random gratings having broadband backscattering enhancement, the demonstrated random fiber grating has a well defined narrower bandwidth of backscattering enhancement, higher laser-induced backscattering level, and lower laser-induced loss, which are critical for long-haul distributed fiber sensor systems with high measurement accuracy. Experimental results showed that by using fabricated random fiber gratings along with the technique of optical frequency-domain reflectometry, a distributed temperature fiber sensor could be realized having a gauge length of 10 mm, standard deviation of temperature measurement as low as 0.00085 degrees C, and laser-induced loss of 0.08 dB/m.
机译:通过使用fs-IR激光器的逐平面光栅刻写方法,在SMF-28光纤中制造了具有低激光诱导损耗的随机光纤光栅,用于分布式温度感测。与具有宽带反向散射增强功能的常规随机光栅相比,演示的随机光纤光栅具有明确定义的反向散射增强带宽更窄,更高的激光诱导的反向散射能级和更低的激光诱导的损耗,这对于长距离分布式光纤传感器系统至关重要测量精度高。实验结果表明,通过结合使用随机光纤光栅和光频域反射仪技术,可以实现标距长度为10 mm,温度测量标准偏差低至0.00085℃的分布式温度光纤传感器。激光引起的损耗为0.08 dB / m。

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