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Real-time distributed optical fiber vibration sensing based on phase-sensitive OTDR

机译:基于相位敏感OTDR的实时分布式光纤振动检测

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Phase-sensitive optical time domain reflectometry (Φ-OTDR) is a promising approach for detecting and locating vibration signals along the whole fiber link. In this paper, a novel high-speed and complete signal transmission scheme based on field programmable gate array (FPGA) and universal serial bus (USB) 2.0 is proposed and applied in the Φ-OTDR system to obtain real-time vibration location. By using the novel scheme, only the effective data is selected and transmitted to the upper system for post-processing in real time. In the experiment, the vibration signals are simulated by hand-clapping, 50 Hz square waves and 400 Hz sine waves. The experimental results demonstrate that the proposed system exhibits good frequency response for vibrations below 1 kHz over 12 km fiber length. In addition, repetition vibration tests are carried out on 4.633 km and 10.022 km, and the location error is within the range of -7 m to +11 m. Therefore, the proposed system holds considerable potential for real-time vibration location and may have a wide application range in areas such as intruder detection, premier security, oil/gas pipeline leakage detection, and railway infrastructure monitoring, etc.
机译:相敏光学时域反射区(φ-OTDR)是用于沿整个光纤链路检测和定位振动信号的有希望的方法。本文提出了一种基于现场可编程栅极阵列(FPGA)和通用串行总线(USB)2.0的新型高速和完整信号传输方案,并应用于φ-OTDR系统中,以获得实时振动位置。通过使用新颖方案,仅选择有效数据并将其传输到上部系统,实时后处理。在实验中,通过手动拍手,50 Hz平方波和400Hz正弦波模拟振动信号。实验结果表明,该系统的振动频率良好,振动低于1kHz,超过12km纤维长度。此外,重复振动试验在4.633km和10.022公里进行,位置误差在-7 m至+11米的范围内。因此,所提出的系统对实时振动位置具有相当大的潜力,并且在入侵者检测,首屈一指安全性,油/天然气管道泄漏检测和铁路基础设施监测等领域可能具有广泛的应用范围。

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