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Pulse shape effects on the measurement of temperature using a Brillouin-based optical fiber sensor

机译:脉冲形状对温度测量的效应,基于布里渊的光纤传感器测量

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Distributed fiber sensing based on Brillouin gain scattering (BGS) principle is a useful way to develop devices capable to measure temperature or/and strain in optical fibers. New effects or technologies that could achieve a larger distance and/or a better spatial resolution are a topic of special interest in this fiber sensing area. The influence of the probe-pulse shape in the interaction between the pulsed light and the continuous wave laser in a pump-probe system is presented. The purpose of this study is to improve the spatial resolution of the measurement without losing stability in the BGS. Also it is showed how the backscattering Brillouin gain is affected by inducing variations on the final value of the BGS intensity; this effect is illustrated by using an experimental set up based on the Brillouin optical time-domain analysis (BOTDA). Theoretical analysis of the probe pulse in the Brillouin shift and intensity value using triangular, sinc and saw tooth shapes around the medium phonon life time (~10ns) are presented; as well as the experimental results and possible applications are explained.
机译:基于Brillouin增益散射(BGS)原理的分布式光纤感测是开发能够测量光纤中温度或/和应变的装置的有用方法。可以实现更大距离和/或更好的空间分辨率的新效果或技术是该光纤传感区域特殊兴趣的主题。提出了探针脉冲形状在泵探针系统中脉冲光和连续波激光器之间的相互作用的影响。本研究的目的是改善测量的空间分辨率而不会在BGS中失去稳定性。此外,它表明了如何通过诱导BGS强度的最终值的变化来影响Bross散射的Brillouin增益;通过使用基于布里渊光学时域分析(BOTDA)的实验组来说明该效果。介绍了使用三角形,SINC的探针脉冲的理论分析,SINC,锯齿形围绕媒体寿命(〜10ns)围绕中的静脉位形状;除了解释实验结果和可能的应用。

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