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Low-noise and high-sensitivity Phi-OTDR based on an optimized dual-pulse heterodyne detection scheme

机译:基于优化的双脉冲外差检测方案的低噪声和高灵敏度PHI-OTDR

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摘要

In this paper, a novel phase-sensitive optical time-domain reflectometry (Phi-OTDR) based on the optimized dual-pulse heterodyne detection scheme (DHDS) is proposed, which is designed to implement distributed vibration sensing with low phase noise and high sensitivity. The optimized DHDS employs an unbalanced interferometer to separate a light pulse into dual probe pulses so that they are generated by the laser at the same time. This ensures that the measurement sensitivity of a phase-interrogation-based Phi-OTDR can be improved simply by increasing the space interval of the dual probe pulses while the phase noise of the Phi-OTDR does not deteriorate. In addition, the proposed DHDS utilizes only one acousto-optic modulator (AOM) to shift the frequencies of the dual probe pulses so as to eliminate the effects of frequency shift jitters, and thus guarantees low phase noise level of a Phi-OTDR. The distributed vibration sensing performances of the Phi-OTDR with the proposed DHDS are theoretically and experimentally studied in terms of multi-event signal restoration and phase noise level. The proposed approach solves the contradiction between the measurement sensitivity and phase noise of a Phi-OTDR and promotes the Phi-OTDR to the applications of distributed weak vibration sensing. (C) 2020 Optical Society of America
机译:本文提出了一种基于优化的双脉冲外差检测方案(DHD)的新型相敏光学时域反射测定法(PHI-OTDR),其旨在实现具有低相位噪声和高灵敏度的分布式振动感应。优化的DHD采用不平衡的干涉仪将光脉冲分离成双探针脉冲,使得它们同时由激光产生。这确保了通过增加双探针脉冲的空间间隔,同时PHI-OTDR的相位噪声不会恶化,可以简单地改善基于相位询问的PHI-OTDR的测量灵敏度。此外,所提出的DHD仅利用一个声光调制器(AOM)来移位双探针脉冲的频率,以消除频移夹具的效果,从而保证PHI-OTDR的低相位噪声水平。理论上,PHI-OTDR的分布式振动感测性能与所提出的DHDS在理论上和实验上研究了多事件信号恢复和相位噪声水平。所提出的方法解决了PHI-OTDR的测量敏感性和相位噪声之间的矛盾,并将PHI-OTDR促进到分布式弱振动感测的应用。 (c)2020美国光学学会

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    《Applied optics》 |2020年第7期|共7页
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