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Distributed optical fibre sensors based on the coherent detection of spontaneous Brillouin scattering

机译:基于相干检测自发布里渊散射的分布式光纤传感器

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摘要

This thesis reports on the progress that has been made improving the sensing performance of a distributed temperature and strain optical fibre sensor based on the coherent detection of spontaneous Brillouin scattering. To further improve the sensing range and the sensor's performance, the use of Raman amplification was investigated utilising different Raman pump configurations. Using frequency measurements only, a temperature resolution of 5 °C over a 150km sensing range with 50m spatial resolution was achieved using a counter-propagating Raman pump. Using co-propagating Raman pump the temperature resolution was 1.7 °C with 20m spatial resolution at 100km. Measuring both the power and frequency of the Brillouin signal, a simultaneous temperature and strain measurement was performed over 50km; temperature and strain resolutions of 3.5 °C and 85 µ.epsilon with 5m spatial resolution were achieved, respectively, using co-propagating Raman pump which has the advantage of requiring access to just one end of the sensing fibre.
机译:本文报道了基于自发布里渊散射的相干检测在改善分布式温度和应变光纤传感器的传感性能方面取得的进展。为了进一步提高感测范围和传感器性能,研究了拉曼放大技术的使用,并使用了不同的拉曼泵浦配置。仅使用频率测量,就可以使用反向传播的拉曼泵在150 km的感应范围内以5 m的温度分辨率实现50 m的空间分辨率。使用共传播拉曼泵,温度分辨率为1.7°C,在100 km处的空间分辨率为20m。测量布里渊信号的功率和频率,在50km上同时进行温度和应变测量。使用共传播拉曼泵,分别获得了3.5°C的温度分辨率和85m.ε的应变分辨率,以及5m的空间分辨率,其共同传播的拉曼泵的优点是仅需要接近传感光纤的一端。

著录项

  • 作者

    Alahbabi Mohammed Nasser;

  • 作者单位
  • 年度 2005
  • 总页数
  • 原文格式 PDF
  • 正文语种 en
  • 中图分类

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