Vibration detection by energy/power cross-correlation in φ-OTDR

Ming-Sien Wen, J. Zhou, Cong Chen, Wentao Zhang, Zujun Qin
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Abstract

Reducing false alarming of vibration and shortening data processing time are one of the key problems of phase sensitive optical time-domain reflectometer (φ-OTDR). Generally speaking, there are two demodulation methods to locate vibrations: phase demodulation and amplitude demodulation. At present, an often-used method is phase-based crosscorrelation, which shows a comparatively reliable detection performance. Compared with phase cross-correlation, energy/power cross-correlation between different positions is simpler and has certain advantages in practical applications. In this paper, we use φ-OTDR to collects periodic vibration signals (power signals) and transient vibration signals (energy signals). Amplitude differentiation is firstly calculated along slow time axis for the Rayleigh backscattering trajectories. For periodic vibration, power spectrum is then obtained at each position, and cross-correlation coefficients between any two spectrums are computed. If the vibration is transient, average energy is calculated along fast time axis and average energy cross-correlation is performed between any two locations. With the cross-correlation values, we are able to determine whether there is vibration on the optical fiber. In the experiment, periodic vibration is simulated by a sine-driven PZT and transient vibration is mimicked by pencil-break. These results demonstrate that power (energy) cross-correlation coefficients work well to locate periodic (transient) vibrations.
φ-OTDR中能量/功率互关振动检测
减少振动虚警和缩短数据处理时间是相敏光学时域反射仪(φ-OTDR)的关键问题之一。一般来说,定位振动的解调方法有两种:相位解调和幅度解调。目前常用的一种方法是基于相位的互相关,它具有比较可靠的检测性能。与相位相关相比,不同位置间的能量/功率相关更为简单,在实际应用中具有一定的优势。本文采用φ-OTDR采集周期振动信号(功率信号)和瞬态振动信号(能量信号)。首先计算了瑞利后向散射轨迹沿慢时间轴的振幅微分。对于周期振动,得到每个位置的功率谱,并计算任意两个谱之间的互相关系数。如果是瞬态振动,则沿快时间轴计算平均能量,并在任意两个位置之间进行平均能量互关。通过互相关值,我们可以确定光纤上是否存在振动。在实验中,用正弦驱动压电陶瓷模拟周期性振动,用断笔模拟瞬态振动。这些结果表明,功率(能量)互相关系数可以很好地定位周期性(瞬态)振动。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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