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Distributed Strain and Temperature Measurement by Brillouin Beat Spectrum

机译:布里渊拍谱法测量分布式应变和温度

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摘要

A novel distributed strain and temperature measurement method based on Brillouin beat spectrum (BBS) in a complex index profile fiber are proposed. The BBS corresponds to the optical interaction of different acoustic modes. For a large-effective-area fiber (LEAF), the first peak of BBS is contributed by the first and second acoustic modes, while the second peak in BBS is contributed by the first and third accoustic modes. Through determining power changes in the peaks of BBS due to strain and temperature variation along a LEAF, the distributed strain and temperature can be measured by the homodyne Brillouin optical time-domain reflectometry (BOTDR) without scanning the Brillouin spectrum. The strain and temperature at the end of a 4.5-km LEAF are measured at 3-m spatial resolution in 140 s.
机译:提出了一种基于布里渊拍谱(BBS)的复折射率分布光纤中分布应变和温度测量的新方法。 BBS对应于不同声学模式的光学交互。对于大有效面积光纤(LEAF),BBS的第一个峰由第一和第二声模贡献,而BBS中的第二个峰由第一和第三声模贡献。通过确定由于沿LEAF的应变和温度变化引起的BBS峰值功率变化,可以通过零差布里渊光学时域反射仪(BOTDR)测量分布的应变和温度,而无需扫描布里渊光谱。在140 km内以3 m的空间分辨率测量了4.5 km LEAF末端的应变和温度。

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