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基于多斜率辅助快速布里渊光时域分析的动态应变分布式测量

Distributed measurement of dynamic strain based on multi-slope assisted fast BOTDA.

作者信息

Ba Dexin, Wang Benzhang, Zhou Dengwang, Yin Mingjing, Dong Yongkang, Li Hui, Lu Zhiwei, Fan Zhigang

出版信息

Opt Express. 2016 May 2;24(9):9781-93. doi: 10.1364/OE.24.009781.

Abstract

We propose and demonstrate a dynamic Brillouin optical fiber sensing based on the multi-slope assisted fast Brillouin optical time-domain analysis (F-BOTDA), which enables the measurement of a large strain with real-time data processing. The multi-slope assisted F-BOTDA is realized based on the double-slope demodulation and frequency-agile modulation, which significantly increases the measurement range compared with the single- or double- slope assisted F-BOTDA, while maintaining the advantage of fast data processing and being suitable for real-time on-line monitoring. A maximum strain variation up to 5000με is measured in a 32-m fiber with a spatial resolution of ~1m and a sampling rate of 1kHz. The frequency of the strain is 12.8Hz, which is limited by the rotation rate of the motor used to load the force on the fiber. Furthermore, the influence of the frequency difference between two adjacent probe tones on the measurement error is studied theoretically and experimentally for optimization. For a Brillouin gain spectrum with a 78-MHz width, the optimum frequency difference is ~40MHz. The measurement error of Brillouin frequency shift is less than 3MHz over the whole measurement range (241MHz).

摘要

我们提出并演示了一种基于多斜率辅助快速布里渊光时域分析(F-BOTDA)的动态布里渊光纤传感技术,该技术能够通过实时数据处理来测量大应变。多斜率辅助F-BOTDA基于双斜率解调与频率捷变调制实现,与单斜率或双斜率辅助F-BOTDA相比,显著增加了测量范围,同时保持了快速数据处理的优势,适用于实时在线监测。在一根32米长的光纤中,以~1米的空间分辨率和1kHz的采样率测量到了高达5000με的最大应变变化。应变频率为12.8Hz,这受到用于对光纤施加力的电机转速的限制。此外,从理论和实验两方面研究了相邻探测光频差对测量误差的影响,以进行优化。对于宽度为78MHz的布里渊增益谱,最佳频差约为40MHz。在整个测量范围(241MHz)内,布里渊频移的测量误差小于3MHz。

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