Interference Fading Suppression for Multi-frequency Φ-OTDR

Yu Wang, Junhong Wang, Bin Liang, Y. Li, Qing Bai, Bao-quan Jin
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Abstract

In phase-sensitive optical time domain reflectometer (Φ-OTDR), due to interference fading, the intensity of Rayleigh backward scattering (RBS) signals may be close to zero at the fading position and submerged in noise, resulting in the abnormal demodulated phase of vibration signal. In this paper, a multi-frequency Φ-OTDR is proposed for the interference fading suppression. Three acousto-optical modulators (AOMs) are used to generate multi-frequency probe pulses. Data alignment processing is carried to ensure the consistency of multi-frequency beat signals. Rotated-vector-sum method is adopted to aggregate multi-frequency signals. Experimental results show that with the help of data alignment processing, the fading probability of aligned curve can be reduced to 1.90%, and the SNR of positioning curve can reach 16.03dB.
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多频干扰衰落抑制Φ-OTDR
在相敏光学时域反射计(Φ-OTDR)中,由于干涉衰落,瑞利后向散射(RBS)信号的强度可能在衰落位置接近于零,淹没在噪声中,导致振动信号的相位解调异常。本文提出了一种多频Φ-OTDR来抑制干扰衰落。利用三个声光调制器产生多频探测脉冲。为了保证多频拍信号的一致性,进行了数据对齐处理。采用旋转矢量和法对多频信号进行聚合。实验结果表明,在数据对准处理的帮助下,对准曲线的衰落概率可以降低到1.90%,定位曲线的信噪比可以达到16.03dB。
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