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BOTDA sensor simulation for the Measurement of Stress and Temperatures

机译:用于应力和温度测量的BOTDA传感器仿真

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This paper presents the simulation of a distributed Brillouin optical sensor for the measurement of stresses and temperatures, considering that currently there is no simulation tool that allows evaluating the performance of these types of sensors when some techniques aimed at increasing its detection range are applied. This developed simulation, allows a comparison from the point of view of the power levels experienced by the probe signal (range), when a technique or a set of techniques aimed at increasing their power level is applied to it, prior to its implementation. The Brillouin Optical Analysis in the Time domain (BOTDA) allows to analyze the effects of Pre- Amplification, First Order Raman Amplification and Optical Coding of the pumping signal in a common simulation scenario. The simulation shows that the best results, in terms of the probe signal power (range), are obtained by combining the techniques of Pre-Amplification, Raman Amplification and Coding of the Pumping Signal.
机译:本文介绍了用于测量应力和温度的分布式布里渊光学传感器的仿真,考虑到当应用一些旨在增加其检测范围的技术时,目前尚不存在允许评估此类传感器性能的仿真工具。这种发达的仿真可以在执行之前将一种或多种旨在提高其功率水平的技术应用于一组信号时,从探针信号(范围)所经历的功率水平的角度进行比较。时域的布里渊光学分析(BOTDA)允许在常见的模拟场景中分析泵浦信号的前置放大,一阶拉曼放大和光学编码的效果。仿真表明,通过结合泵浦信号的预放大,拉曼放大和编码技术,可获得最佳的探头信号功率(范围)结果。

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