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使用空分复用探头的φ-OTDR中的干扰衰落抑制

Interference fading suppression in φ-OTDR using space-division multiplexed probes.

作者信息

Zhao Zhiyong, Wu Huan, Hu Junhui, Zhu Kun, Dang Yunli, Yan Yaxi, Tang Ming, Lu Chao

出版信息

Opt Express. 2021 May 10;29(10):15452-15462. doi: 10.1364/OE.422608.

Abstract

We propose and experimentally demonstrate a novel interference fading suppression method for phase-sensitive optical time domain reflectometry (φ-OTDR) using space-division multiplexed (SDM) pulse probes in a few-mode fiber. The SDM probes consist of multiple different modes, and three spatial modes (LP01, LP11a, and LP11b) are used in this work for the proof of concept. Firstly, the Rayleigh backscattering light of different modes is experimentally characterized, and it turns out that the waveforms of the φ-OTDR traces for distinct modes are all different and independent. Thanks to the spatial difference of the fading positions for distinct modes, multiple probes from spatially multiplexed modes can be used to suppress the interference fading in φ-OTDR. Then, the performances of the φ-OTDR systems using a single probe and multiple probes are evaluated and compared. Specifically, the statistical analysis shows that the fading probabilities over both the fiber length and the time scale are reduced significantly by using multiple SDM probes, which verifies the significant performance improvement on fading suppression. By introducing the concept of SDM to φ-OTDR, the proposed novel interference fading suppression method avoids the complicated frequency or phase modulation, which has the advantages of simplicity, good effectiveness and high reliability.

摘要

我们提出并通过实验证明了一种用于相敏光时域反射仪(φ-OTDR)的新型干扰衰落抑制方法,该方法在少模光纤中使用空分复用(SDM)脉冲探头。SDM探头由多个不同模式组成,在本工作中使用了三种空间模式(LP01、LP11a和LP11b)来进行概念验证。首先,对不同模式的瑞利背向散射光进行了实验表征,结果表明不同模式的φ-OTDR迹线波形均不同且相互独立。由于不同模式衰落位置的空间差异,来自空间复用模式的多个探头可用于抑制φ-OTDR中的干扰衰落。然后,对使用单个探头和多个探头的φ-OTDR系统的性能进行了评估和比较。具体而言,统计分析表明,使用多个SDM探头可显著降低光纤长度和时间尺度上的衰落概率,这验证了在衰落抑制方面的显著性能提升。通过将SDM概念引入φ-OTDR,所提出的新型干扰衰落抑制方法避免了复杂的频率或相位调制,具有简单、有效性好和可靠性高的优点。

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