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基于布里渊光时域反射和偏振光时域反射的分布式光纤应变和振动传感器。

Distributed fiber strain and vibration sensor based on Brillouin optical time-domain reflectometry and polarization optical time-domain reflectometry.

机构信息

Institute of Optical Communication Engineering, Nanjing University, Jiangsu, China.

出版信息

Opt Lett. 2013 Jul 15;38(14):2437-9. doi: 10.1364/OL.38.002437.

Abstract

A distributed fiber strain and vibration sensor which effectively combines Brillouin optical time-domain reflectometry and polarization optical time-domain reflectometry is proposed. Two reference beams with orthogonal polarization states are, respectively, used to perform the measurement. By using the signal obtained from either reference beam, the vibration of fiber can be measured from the polarization effect. After combining the signals obtained by both reference beams, the strain can be measured from the Brillouin effect. In the experiment, 10 m spatial resolution, 0.6 kHz frequency measurement range, 2.5 Hz frequency resolution, and 0.2 MHz uncertainty of Brillouin frequency measurement are realized for a 4 km sensing distance.

摘要

提出了一种将布里渊光时域反射和偏振光时域反射有效结合的分布式光纤应变和振动传感器。该传感器分别采用两个具有正交偏振态的参考光束进行测量。利用来自任一参考光束的信号,可以从偏振效应测量光纤的振动。结合两个参考光束获得的信号,可以从布里渊效应测量应变。在实验中,对于 4km 的传感距离,实现了 10m 的空间分辨率、0.6kHz 的频率测量范围、2.5Hz 的频率分辨率以及 0.2MHz 的布里渊频率测量不确定度。

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