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Achievement of an 85 km Distance Range of Strain (Temperature) Measurements Using Low-Coherence Rayleigh Reflectometry

机译:使用低相干Rayleigh反射测量成果实现85公里距离的菌株(温度)测量范围

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摘要

The possibility of measuring strain (temperature) over distances up to 85 km in a single-ended optical fiber using the technique of low coherence Rayleigh reflectometry has been demonstrated. The indicated range is provided by employing Raman amplification of radiation in combination with amplification by short erbium doped fiber segments built into the fiber under test. The possibility of tuning a low coherence source in a wide range of wavelengths made it possible to measure strain in the range of 500 mu epsilon, which is equivalent to 56 degrees C in units of temperature. At a unit measurement time of 10 min and a spatial resolution of 2.6 m, the standard uncertainty of the strain measurements was 3.8 mu epsilon and of the temperature ones was 0.42 degrees C.
机译:已经证明了使用低相干瑞利反射技术在单端光纤中测量高达85 km的距离的距离(温度)的可能性。 通过使用内置于纤维的短铒掺杂纤维段的扩增,通过采用辐射的拉曼扩增来提供所指示的范围。 在各种波长中调谐低相干源的可能性使得可以测量500μm的ε在500μm的范围内,其以56摄氏度以温度为单位。 在10分钟的单位测量时间和2.6米的空间分辨率下,应变测量的标准不确定度为3.8μmε,温度为0.42℃。

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