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免扫描混合瑞利-布里渊分布式光纤传感系统

Scanning-free hybrid Rayleigh-Brillouin distributed fiber-optic sensing system.

作者信息

Huang Linjing, Fan Xinyu, He Zuyuan

出版信息

Opt Lett. 2023 Sep 1;48(17):4629-4632. doi: 10.1364/OL.499635.

Abstract

Hybrid systems based on Brillouin optical time domain analysis (BOTDA) utilizing Rayleigh backscattering light wave as a probe have enabled single-end and long-range distributed sensing for multiple parameters. However, the spatial resolution for dynamic parameter measurement is limited, and the frequency scanning process of BOTDA is time-consuming. To address these challenges, we propose a hybrid system that combines BOTDA and time-gated digital optical frequency domain reflectometry (TGD-OFDR), aiming to enhance the spatial resolution of dynamic measurements without compromising the system's signal-to-noise ratio and eliminate the frequency scanning process of BOTDA. In the experimental setup, we conducted measurements on a 9.52 km single-mode fiber. A sinusoidal vibration with a frequency of 3 kHz was measured with a spatial resolution of 3 m, achieving a noise floor of 0.05 n/√Hz. Furthermore, temperature measurements with a spatial resolution of 10 m and a Brillouin frequency shift (BFS) measurement accuracy of 0.74 MHz were successfully obtained using the scanning-free single-end BOTDA technique. This hybrid system shows promising potential for various applications in distributed fiber-optic sensing.

摘要

基于布里渊光时域分析(BOTDA)的混合系统利用瑞利背向散射光波作为探测波,实现了对多种参数的单端和远程分布式传感。然而,动态参数测量的空间分辨率有限,且BOTDA的频率扫描过程耗时。为应对这些挑战,我们提出了一种将BOTDA与时间选通数字光频域反射仪(TGD-OFDR)相结合的混合系统,旨在提高动态测量的空间分辨率,同时不降低系统的信噪比,并消除BOTDA的频率扫描过程。在实验装置中,我们在一根9.52公里的单模光纤上进行了测量。测量了频率为3千赫兹的正弦振动,空间分辨率为3米,本底噪声为0.05纳/√赫兹。此外,使用无扫描单端BOTDA技术成功获得了空间分辨率为10米的温度测量结果以及布里渊频移(BFS)测量精度为0.74兆赫兹的结果。该混合系统在分布式光纤传感的各种应用中显示出了广阔的前景。

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