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Distributed Brillouin sensing using polarization-maintaining fibers with high measurement accuracy.

机译:使用保偏光纤以高测量精度进行分布式布里渊传感。

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摘要

This thesis is a collection of studies on a distributed sensor based on Brillouin scattering using polarization maintaining (PM) fibers as well as single mode fibers.;With a specially designed optical fiber circuit consisting of two polarizing beam splitters and polarization controllers, PM fibers were successfully used as sensing media for the Brillouin distributed sensor developed at the University of Ottawa. The use of a single axis of a PM fiber minimizes polarization effects and therefore improves the signal to noise ratio of the Brillouin spectrum and hence, the measurement resolution. The strain and temperature dependence of Brillouin frequency, intensity and bandwidth of three types of commercial PM fibers: PANDA, Bow-tie and Tiger were investigated. The main findings from these investigations are as follows: (1) in a PM fiber, the temperature dependence of the Brillouin frequency in the slow axis is the same as that in the fast axes, and so is the strain dependence, (2) the Brillouin spectrum bandwidth is strain and temperature dependent, and (3) PANDA PM fiber shows the greatest promise for use in sensing applications and Tiger fiber is not suitable for Brillouin sensing. The feasibility of simultaneously measuring strain and temperature using PM fibers was examined.;The 2nd order partial derivative of the Stokes intensity with respect to frequency and position shows a maximum or minimum at the boundary between two different strained sections. This idea was used to locate the boundary between different strain regions. This provides a spatial location accuracy between 5 cm to 10 cm, which is better than the 20 cm pulse length used in the experiment.;The influences of transient phonon (defined as when pulse width is shorter than the phonon relaxation time) relaxation on the Brillouin loss spectrum have been observed and investigated. The transient phonon field lasts longer than the nature phonon lifetime (∼10 ns). This transient phonon relaxation time is pump power and probe ER dependent, and it affects the strain, temperature, and location measurement accuracy.
机译:本文是对基于布里渊散射的,使用保偏(PM)光纤和单模光纤的分布式传感器的研究的集合。通过由两个偏振分束器和偏振控制器组成的特殊设计的光纤电路,保偏光纤成功地用作渥太华大学开发的布里渊分布式传感器的传感介质。使用PM光纤的单轴可以最大程度地减少偏振效应,从而提高布里渊光谱的信噪比,从而提高测量分辨率。研究了布里渊频率,强度和带宽对三种类型的商用保偏纤维(PANDA,领结和老虎)的应变和温度依赖性。这些研究的主要发现如下:(1)在保偏光纤中,布里渊频率在慢轴上的温度依赖性与快轴上的相同,并且应变依赖性也是如此,(2)布里渊频谱带宽取决于应变和温度,并且(3)PANDA PM光纤在传感应用中显示出最大的希望,而Tiger光纤不适合布里渊传感。检验了使用PM纤维同时测量应变和温度的可行性。斯托克斯强度相对于频率和位置的二阶偏导数在两个不同应变区域之间的边界处显示最大值或最小值。这个想法被用来定位不同应变区域之间的边界。这提供了5 cm至10 cm之间的空间定位精度,优于实验中使用的20 cm脉冲长度。瞬态声子(定义为当脉冲宽度短于声子弛豫时间时)对弛豫的影响布里渊损失谱已被观察和研究。瞬态声子场的持续时间长于自然声子的寿命(约10 ns)。瞬态声子弛豫时间取决于泵浦功率和探头ER,并且会影响应变,温度和位置测量精度。

著录项

  • 作者

    Yu, Qinrong.;

  • 作者单位

    University of Ottawa (Canada).;

  • 授予单位 University of Ottawa (Canada).;
  • 学科 Physics Optics.
  • 学位 Ph.D.
  • 年度 2006
  • 页码 118 p.
  • 总页数 118
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 光学;
  • 关键词

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