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首页> 外文期刊>Journal of Lightwave Technology >Vibration-Induced Beat Frequency Offset Compensation in Distributed Acoustic Sensing Based on Optical Frequency Domain Reflectometry
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Vibration-Induced Beat Frequency Offset Compensation in Distributed Acoustic Sensing Based on Optical Frequency Domain Reflectometry

机译:基于光频域反射法的分布式声学传感中的振动引起的拍频偏移补偿

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摘要

We investigate the impact of the frequency modulation induced by vibration occurring at a preceding distance in distributed acoustic sensing (DAS) based on optical frequency domain reflectometry (OFDR), which analyzes a vibration waveform by calculating the spectrum shift of Rayleigh backscattered light in the same manner as a fiber Bragg grating. When the measurement time of a beat signal is shorter than the period of the vibration at the preceding distance, the vibration-induced frequency modulation can be treated as a frequency offset for the backscattered light. The frequency offset becomes a distance offset through the distance beat frequency allocation of OFDR, and the distance offset forces us to interrogate the Rayleigh backscattered light spectra at unintentional distances for each measurement since the distance offset is time-varying. Since the spectra at unintentional distances are uncorrelated, the spectrum shift calculated with an uncorrelated spectrum results in a spurious vibration, which is a measured waveform that is different from the actual vibration waveform and that constitutes a measurement error in a DAS measurement. We propose a technique to compensate for the spurious vibration. The technique estimates the vibration-induced distance offset by calculating the cross-correlation between Rayleigh backscattered light waveforms and shifts the spectrum analysis range by the estimated offset in order to track the consistent spectrum. We perform a DAS measurement on a sensing fiber that experiences simultaneous vibrations at different distances and confirm the validity of the proposed technique.
机译:我们基于光学频域反射法(OFDR)研究分布式声感测(DADR)中在先前距离处发生的振动引起的频率调制的影响,该光频域反射法(OFDR)通过计算同一位置的瑞利背向散射光的频谱偏移来分析振动波形像布拉格光栅一样。当拍子信号的测量时间短于先前距离处的振动周期时,可以将振动引起的频率调制视为反向散射光的频率偏移。频率偏移成为通过OFDR的距离拍频分配的距离偏移,并且由于距离偏移随时间变化,因此距离偏移迫使我们在每次测量的无意距离处询问瑞利背向散射光谱。由于无意距离处的光谱是不相关的,因此使用不相关的光谱计算出的光谱偏移会导致杂散振动,该杂散振动是与实际振动波形不同的测量波形,在DAS测量中构成测量误差。我们提出了一种补偿寄生振动的技术。该技术通过计算瑞利反向散射光波形之间的互相关性来估计振动引起的距离偏移,并将频谱分析范围偏移估计的偏移量以跟踪一致的频谱。我们在经历不同距离同时振动的传感光纤上执行DAS测量,并确认所提出技术的有效性。

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