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首页> 外文期刊>Photonics Journal, IEEE >A Cost-Effective Distributed Acoustic Sensor Using a Commercial Off-the-Shelf DFB Laser and Direct Detection Phase-OTDR
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A Cost-Effective Distributed Acoustic Sensor Using a Commercial Off-the-Shelf DFB Laser and Direct Detection Phase-OTDR

机译:使用商用现成的DFB激光器和直接检测相-OTDR的具有成本效益的分布式声传感器

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摘要

We propose and experimentally demonstrate the use of cyclic pulse coding for enhanced performance in distributed acoustic sensing based on a phase-sensitive optical time-domain reflectometry ( -OTDR) using direct detection. First, we present a theoretical analysis showing that to make cyclic pulse coding effective in -OTDR, the laser linewidth and stability must be optimized to simultaneously guarantee intrapulse coherence and interpulse incoherence. We then confirm that commercial off-the-shelf distributed feedback (DFB) lasers can satisfy these conditions, providing coding gain consistent with theoretical predictions. By externally modulating such lasers with cyclic pulse coding, we demonstrate a distributed acoustic sensor capable of measuring vibrations of up to 500 Hz over 5 km of standard single-mode fiber with 5-m spatial resolution with ∼9-dB signal-to-noise ratio (SNR) improvement compared with the single-pulse equivalent. We also show that the proposed solution offers sensing performances that are comparable to similar sensors employing highly coherent and stabilized external cavity lasers and a single-pulse -OTDR.
机译:我们提出并通过实验演示了循环脉冲编码在基于直接检测的相敏光学时域反射仪(-OTDR)的基础上,在分布式声学传感中增强性能的用途。首先,我们进行了理论分析,结果表明,要使循环脉冲编码在-OTDR中有效,必须优化激光器的线宽和稳定性,以同时确保脉冲内相干和脉冲间不相干。然后,我们确认商用现货分布反馈(DFB)激光器可以满足这些条件,并提供与理论预测一致的编码增益。通过使用循环脉冲编码对此类激光器进行外部调制,我们展示了一种分布式声学传感器,该传感器能够在5 km的标准单模光纤上以5 m的空间分辨率测量5 km的高达500 Hz的振动,信噪比约为9 dB与单脉冲等效值相比,信噪比(SNR)有所提高。我们还表明,所提出的解决方案提供的感测性能可与采用高度相干且稳定的外腔激光器和单脉冲-OTDR的类似传感器相媲美。

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