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Analysis of Parameters for a Distributed Temperature Sensing based on Raman Scattering

机译:基于拉曼散射的分布式温度传感参数分析

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This paper presents a theoretical and computational study on the analysis of parameters for distributed temperature sensing in optical fibers, based on spontaneous Raman scattering effect. The parameters studied were the optical power level, the range of frequency modulation and the length of the sensor element, as well as the application of optical frequency domain reflectometry (OFDR). Two different approaches of reading temperature information from the backscattered signal were also tested. First, one considered the pulse response, and later the ratio between the amplitudes of the detected signals were taken. Such analysis has shown the second method is more efficient to detect the peak of hot spot temperature in the fiber. Spatial resolution equal to 0.96 m and a temperature resolution of 0.089 ?°C were achieved using singlemode fiber 30 meters long.
机译:本文基于自发拉曼散射效应,对光纤中分布式温度传感参数的分析进行了理论和计算研究。研究的参数是光功率水平,频率调制范围和传感器元件的长度,以及光频域反射仪(OFDR)的应用。还测试了两种从反向散射信号读取温度信息的方法。首先,考虑脉冲响应,然后获取检测信号幅度之间的比率。这种分析表明,第二种方法更有效地检测光纤中热点温度的峰值。使用30米长的单模光纤可实现等于0.96 m的空间分辨率和0.089°C的温度分辨率。

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