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Distributed Acoustic Sensing Using Chirped-Pulse Phase-Sensitive OTDR Technology

机译:使用Chi脉冲相位敏感型OTDR技术的分布式声学传感

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摘要

In 2016, a novel interrogation technique for phase-sensitive (Φ)OTDR was mathematically formalized and experimentally demonstrated, based on the use of a chirped-pulse as a probe, in an otherwise direct-detection-based standard setup: chirped-pulse (CP-)ΦOTDR. Despite its short lifetime, this methodology has now become a reference for distributed acoustic sensing (DAS) due to its valuable advantages with respect to conventional (i.e., coherent-detection or frequency sweeping-based) interrogation strategies. Presenting intrinsic immunity to fading points and using direct detection, CP-ΦOTDR presents reliable high sensitivity measurements while keeping the cost and complexity of the setup bounded. Numerous technique analyses and contributions to study/improve its performance have been recently published, leading to a solid, highly competitive and extraordinarily simple method for distributed fibre sensing. The interesting sensing features achieved in these last years CP-ΦOTDR have motivated the use of this technology in diverse applications, such as seismology or civil engineering (monitoring of pipelines, train rails, etc.). Besides, new areas of application of this distributed sensor have been explored, based on distributed chemical (refractive index) and temperature-based transducer sensors. In this review, the principle of operation of CP-ΦOTDR is revisited, highlighting the particular performance characteristics of the technique and offering a comparison with alternative distributed sensing methods (with focus on coherent-detection-based ΦOTDR). The sensor is also characterized for operation in up to 100 km with a low cost-setup, showing performances close to the attainable limits for a given set of signal parameters [≈tens-hundreds of pe/sqrt(Hz)]. The areas of application of this sensing technology employed so far are briefly outlined in order to frame the technology.
机译:2016年,基于the脉冲作为探针的基础上,在以其他方式基于直接检测的标准设置中,对相敏(Φ)OTDR的新型询问技术进行了数学形式化和实验证明,即chi脉冲( CP-)ΦOTDR。尽管该方法寿命短,但由于其相对于常规(即,基于相干检测或基于频率扫描的)询问策略的宝贵优势,该方法现在已成为分布式声感测(DAS)的参考。 CP-ΦOTDR具有对衰落点的固有免疫力,并使用直接检测功能,可提供可靠的高灵敏度测量结果,同时又能保持设置的成本和复杂性。最近已经发表了许多技术分析以及对研究/改善其性能的贡献,从而导致了一种可靠,高度竞争且非常简单的分布式光纤传感方法。近年来,CP-ΦOTDR实现了有趣的传感功能,促使该技术在各种应用中使用,例如地震学或土木工程(管道,火车轨道等的监视)。此外,基于分布式化学(折射率)和基于温度的换能器传感器,已经探索了该分布式传感器的新应用领域。在这篇综述中,CP-ΦOTDR的工作原理被重新审视,强调了该技术的特殊性能特征,并与其他分布式传感方法进行了比较(重点是基于相干检测的ΦOTDR)。该传感器还具有可在100 km以下以低成本设置运行的特点,显示出的性能接近给定信号参数集[≈数百pe / sqrt(Hz)的可达到的极限]。到目前为止,简要概述了此传感技术的应用领域,以构筑该技术。

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