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SNR enhanced distributed vibration fiber sensing system employing polarization OTDR and ultraweak FBGs

机译:采用极化OTDR和超弱FBG的SNR增强型分布式振动光纤传感系统

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摘要

A distributed fiber sensing system based on ultraweak FBGs (UWFBGs) assisted polarization optical time-domain reflectometry (POTDR) is proposed for load and vibration sensing with improved signal-to-noise ratio (SNR) and sensitivity. UWFBGs with reflectivity higher than Rayleigh scattering coefficient per pulse are induced into a POTDR system to increase the intensity of the back signal. The performance improvement of the system has been studied. The numerical analysis has shown that the SNR and sensitivity of the system can be effectively improved by integrating UWFBGs along the whole sensing fiber, which has been clearly proven by the experiment. The experimental results have shown that by using UWFBGs with 1.1 x 10-5 reflectivity and 10-m interval distance, the SNR is improved by 11 dB, and the load and vibration sensitivities of the POTDR are improved by about 10.7 and 9 dB, respectively.
机译:提出了一种基于超弱FBG(UWFBG)辅助偏振光时域反射仪(POTDR)的分布式光纤传感系统,用于负载和振动传感,具有改善的信噪比(SNR)和灵敏度。反射率高于每个脉冲瑞利散射系数的UWFBG被引入POTDR系统,以增加反向信号的强度。已经研究了该系统的性能改进。数值分析表明,通过在整个传感光纤上集成UWFBG,可以有效地提高系统的SNR和灵敏度,这一点已被实验清楚地证明。实验结果表明,通过使用具有1.1 x 10-5反射率和10-m间隔距离的UWFBG,SNR可以提高11 dB,POTDR的负载和振动灵敏度分别可以提高约10.7和9 dB。 。

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