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Distributed dynamic strain measurement using optical frequency-domain reflectometry

机译:使用光学频域反射仪的分布式动态应变测量

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摘要

Distributed dynamic strain measurement based on optical frequency-domain reflectometry is proposed. The technique makes use of the wide scanning range of a tunable laser source in a short sweeping time, and subdivides the overall spectrum into narrower frequency windows. The advantage of subdividing the laser spectral range is to improve the measurement uncertainty induced by the laser wavelength difference between repeated scans. The noise-limited dynamic strain resolution is investigated experimentally, indicating that a minimum detectable strain is less than 200 n epsilon for a spatial resolution of 20 cm. By measuring the subdivided spectral shifts in the time sequence along the sensing fiber, the dynamic strain can be properly quantified over a 30 m measurement range for a highest sampling rate of up to 50 Hz. (C) 2016 Optical Society of America
机译:提出了一种基于光频域反射法的分布式动态应变测量方法。该技术在很短的扫描时间内利用了可调激光源的宽扫描范围,并将整个频谱细分为更窄的频率窗口。细分激光光谱范围的优势在于,可以提高重复扫描之间的激光波长差所引起的测量不确定度。实验研究了噪声限制的动态应变分辨率,表明对于20 cm的空间分辨率,最小可检测应变小于200 nε。通过测量沿着传感光纤的时间序列中细分的频谱偏移,可以在30 m的测量范围内正确量化动态应变,以实现高达50 Hz的最高采样率。 (C)2016美国眼镜学会

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