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Optical fiber distributed temperature sensor using short term Fourier transform based simplified signal processing of Raman signals

机译:使用基于短期傅立叶变换的拉曼信号简化信号处理的光纤分布式温度传感器

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摘要

A simplified technique using short term Fourier transform to reduce the errors in distributed temperature measurement with a Raman scattering based optical fiber sensor system is presented. The two main sources of errors are differential attenuation to anti-Stokes and Stokes signal by fiber and local change in Stokes due to change in temperature. The proposed technique compensates these errors and extracts correct temperature profile in spite of practical difficulties encountered in applying the theoretical concept. Moreover proposed technique is less complex, self-reliant, can tolerate variation in laser power, requires less dead zone and suits automation using embedded solution. Results of measurement carried out, using the system developed at RRCAT, Indore, for two hot zones having spatial width of 1.9 m (kept at 56℃) and 1.5 m (kept at 78℃), located at 47 m and 85 m respectively, show that these parameters can be recovered with significantly small errors.
机译:提出了一种简化的技术,该技术使用短期傅里叶变换来减少基于拉曼散射的光纤传感器系统在分布式温度测量中的误差。误差的两个主要来源是光纤对反斯托克斯和斯托克斯信号的差分衰减以及由于温度变化引起的斯托克斯局部变化。尽管在应用理论概念时遇到实际困难,但所提出的技术补偿了这些误差并提取了正确的温度曲线。而且,所提出的技术不太复杂,自力更生,可以容忍激光功率的变化,需要的死区更少并且适合使用嵌入式解决方案的自动化。使用印多尔RRCAT开发的系统对两个热区分别位于47 m和85 m的两个热区进行了测量,这些热区的空间宽度分别为1.9 m(保持在56℃)和1.5 m(保持在78℃),表明可以以很小的误差恢复这些参数。

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