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A Long Distance Phase-Sensitive Optical Time Domain Reflectometer with Simple Structure and High Locating Accuracy

机译:结构简单,定位精度高的长距离相位敏感光时域反射仪

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A phase-sensitive optical time domain reflectometer (Φ-OTDR) can be used for pipeline security. However, the sensing distance (less than 20 km) of traditional Φ-OTDR is too short for the needs of typical oil and gas pipeline monitoring applications (30–50 km). A simple structure Φ-OTDR system utilizing long pulse, balanced amplified detector and heterodyne detection is proposed in this paper and the sensing range is thereby increased to 60 km. Through analyzing the sensing principle of Φ-OTDR, a novel locating strategy is proposed to maintain the locating accuracy at a few meters when a long pulse (5 µs) is used. The increased pulse width deteriorates the time series of each sensing point seriously. In order to eliminate the deterioration, a data processing technique combining wavelet and empirical mode decomposition is applied in this system. The experiment results show that the sensing distance can be increased to 60 km and the locating accuracy is maintained at 6.8 m.
机译:相敏光时域反射仪(Φ-OTDR)可用于管道安全。但是,传统的Φ-OTDR的感测距离(小于20 km)太短,无法满足典型的油气管道监控应用(30–50 km)的需求。提出了一种利用长脉冲,平衡放大检测器和外差检测的简单结构Φ-OTDR系统,从而将检测范围扩大到60 km。通过分析Φ-OTDR的感应原理,提出了一种新颖的定位策略,以在使用长脉冲(5 µs)时将定位精度保持在几米之内。增大的脉冲宽度严重恶化了每个感测点的时间序列。为了消除劣化,在该系统中应用了将小波和经验模式分解相结合的数据处理技术。实验结果表明,该传感器的传感距离可以增加到60 km,定位精度保持在6.8 m。

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