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首页> 外文期刊>Photonics Technology Letters, IEEE >Active Compensation Method for Light Source Frequency Drifting in src='/images/tex/26915.gif' alt='Phi '> -OTDR Sensing System
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Active Compensation Method for Light Source Frequency Drifting in src='/images/tex/26915.gif' alt='Phi '> -OTDR Sensing System

机译: src =“ / images / tex / 26915.gif” alt =“ Phi”> -OTDR传感系统中光源频率漂移的有源补偿方法

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摘要

Phase-sensitive optical time-domain reflectometry (-OTDR) has the ability to make a measurement on external disturbance dynamically along the sensing fiber by monitoring the interference fading pattern variance of the Rayleigh backscattering waveform through continuous probe pulse injection. However, even if there is no disturbance, the received -OTDR trace will still show slow but noteworthy distortion due to light source frequency drifting (LSFD). This trace-to-trace slow distortion makes it challenging to capture low-frequency event. In this letter, an active compensation method based on laser frequency sweep and cross-correlation calculation has been proposed to suppress the influence of LSFD. With the proposed active compensation method, the tracking of LSFD can be realized, and the trace-to-trace distortion can be greatly suppressed. The experimental result has shown that a vibration event of 0.5 Hz has been identified successfully under mean frequency drifting speed of 1.68 MHz/s, which extends the application realm of the -OTDR sensing system to quasi-static measurement.
机译:相敏感的光学时域反射仪(-OTDR)能够通过连续探测脉冲注入来监测瑞利反向散射波形的干扰衰落模式方差,从而沿着传感光纤动态测量外部干扰。但是,即使没有干扰,由于光源频率漂移(LSFD),接收到的-OTDR迹线仍会显示缓慢但值得注意的失真。这种跟踪到跟踪的缓慢失真使其难以捕获低频事件。本文提出了一种基于激光扫频和互相关计算的有源补偿方法,以抑制LSFD的影响。利用所提出的主动补偿方法,可以实现对LSFD的跟踪,并且可以极大地抑制迹间失真。实验结果表明,在1.68 MHz / s的平均频率漂移速度下,成功识别了0.5 Hz的振动事件,这将-OTDR传感系统的应用领域扩展到准静态测量。

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