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Impact of Loss Variations on Double-Ended Distributed Temperature Sensors Based on Raman Anti-Stokes Signal Only

机译:仅基于拉曼反斯托克斯信号的损耗变化对双端分布式温度传感器的影响

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摘要

We present a theoretical and experimental analysis of the sensing capabilities of Raman-based distributed temperature optical fiber sensor (RDTS) systems using only the anti-Stokes (AS) component in loop configuration. In particular, the effects of time- and wavelength-dependent losses on the sensor performance are thoroughly investigated under different experimental conditions. As expected from the developed theory, experimental results demonstrate that using the loop AS-light only approach in RDTS systems can correct the impact of local and wavelength-dependent losses on the final temperature measurements, with the simple use of an internal calibration fiber spool at a known temperature value. Signal-to-noise ratio and temperature resolution analyses of the AS-only RDTS point out an improved temperature resolution in comparison to standard RDTS systems in loop configuration.
机译:我们提出了基于拉曼的分布式温度光纤传感器(RDTS)系统在环路配置中仅使用反斯托克斯(AS)组件的传感能力的理论和实验分析。特别是,在不同的实验条件下,对与时间和波长有关的损耗对传感器性能的影响进行了彻底研究。正如已开发理论所预期的那样,实验结果表明,在RDTS系统中使用仅环路AS-light方法,只需在以下位置使用内部校准光纤线轴即可校正局部和波长相关损耗对最终温度测量的影响已知的温度值。仅AS的RDTS的信噪比和温度分辨率分析表明,与环路配置中的标准RDTS系统相比,温度分辨率有所提高。

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