Acta Optica Sinica, Volume. 44, Issue 1, 0106025(2024)

Raman Distributed Optical Fiber Sensing Based on Multi-Order Time-Domain Differential Reconstruction Correlation

Jian Li1,3, Bowen Fan3, Zijia Cheng3, Xiaohui Xue3, and Mingjiang Zhang2,3、*
Author Affiliations
  • 1College of Electric Information and Optical Engineering, Taiyuan University of Technology, Taiyuan 030024, Shanxi , China
  • 2College of Physics, Taiyuan University of Technology, Taiyuan 030024, Shanxi , China
  • 3Key Laboratory of Advanced Transducers and Intelligent Control System, Ministry of Education, Taiyuan University of Technology, Taiyuan 030024, Shanxi , China
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    References(39)

    [1] Raman C V, Krishnan K S. A new type of secondary radiation[J]. Nature, 121, 501-502(1928).

    [2] Wang Y H, Zheng S S, Yang W M et al. In situ Raman spectroscopy reveals the structure and dissociation of interfacial water[J]. Nature, 600, 81-85(2021).

    [3] Soto M A, Ramírez J A, Thévenaz L. Intensifying the response of distributed optical fibre sensors using 2D and 3D image restoration[J]. Nature Communications, 7, 10870(2016).

    [4] Völkel A, Nimmesgern L, Mielnik-Pyszczorski A et al. Intracavity Raman scattering couples soliton molecules with terahertz phonons[J]. Nature Communications, 13, 2066(2022).

    [5] Liu N N, Dou Z M, Jia R Y et al. Influencing factors of temporal modes of Raman photons in long optical fibers[J]. Acta Optica Sinica, 42, 0919001(2022).

    [6] Wu T, Pang T, Tang Y Q et al. Application of MOPA all-fiber pulsed laser in RDTS system[J]. Chinese Journal of Laser, 46, 1101009(2019).

    [7] Yuan L B, Tong W J, Jiang S et al. Road map of fiber optic sensor technology in China[J]. Acta Optica Sinica, 42, 0100001(2022).

    [8] Sun M, Tang Y Q, Yang S et al. Noise reduction method for improving temperature measurement accuracy of distributed temperature sensor[J]. Laser & Optoelectronics Progress, 59, 1906003(2022).

    [9] Shen W B, Zhang D S. Influence of bending loss to demodulation on distributed fiber Raman temperature measurement[J]. Laser & Optoelectronics Progress, 60, 0506004(2023).

    [10] Zhou Z M, Zhang J, Huang X S et al. Trend of soil temperature during pipeline leakage of high-pressure natural gas: experimental and numerical study[J]. Measurement, 153, 107440(2020).

    [11] Yamate T, Fujisawa G, Ikegami T. Optical sensors for the exploration of oil and gas[J]. Journal of Lightwave Technology, 35, 3538-3545(2017).

    [12] Apperl B, Pressl A, Schulz K. Feasibility of locating leakages in sewage pressure pipes using the distributed temperature sensing technology[J]. Water, Air, & Soil Pollution, 228, 82-94(2017).

    [13] Amitabha D, Haritha M, Deepa V et al. Reference-free real-time power line monitoring using distributed anti-stokes Raman thermometry for smart power grids[J]. IEEE Sensors Journal, 20, 7044-7052(2020).

    [14] Li J, Zhang M J. Physics and applications of Raman distributed optical fiber sensing[J]. Light: Science & Applications, 11, 128(2022).

    [15] Li J, Yu T, Zhang M J et al. Temperature and crack measurement using distributed optic-fiber sensor based on Raman loop configuration and fiber loss[J]. IEEE Photonics Journal, 11, 6802113(2019).

    [16] Hausner M B, Suárez F, Glander K E et al. Calibrating single-ended fiber-optic Raman spectra distributed temperature sensing data[J]. Sensors, 11, 10859-10879(2011).

    [17] Wang Z L, Chang J, Zhang S S et al. Spatial resolution improvement of distributed Raman temperature measurement system[J]. IEEE Sensors Journal, 13, 4271-4278(2013).

    [18] Wang J Q, Li Z Y, Fu X L et al. High-sensing-resolution distributed hot spot detection system implemented by a relaxed pulse width[J]. Optics Express, 28, 16045-16056(2020).

    [19] Zhang M J, Li J, Liu Y et al. Temperature demodulation method for distributed fiber Raman temperature measurement[J]. Chinese Journal of Lasers, 44, 0306002(2017).

    [20] Matías L, Francisco S, Hausner Mark B et al. Extension of duplexed single-ended distributed temperature sensing calibration algorithms and their application in geothermal systems[J]. Sensors, 22, 3319(2022).

    [21] Li J, Zhou X X, Xu Y et al. Slope-assisted Raman distributed optical fiber sensing[J]. Photonics Research, 10, 205-213(2021).

    [22] Xia J C, Xia L, Yang Z et al. Attenuation calibration method based on sensitivity correction in a Raman distributed temperature system[J]. Applied Optics, 59, 300-305(2020).

    [23] Li J, Li Y T, Zhang M J et al. Performance improvement of Raman distributed temperature system by using noise suppression[J]. Photonic Sensors, 8, 103-113(2018).

    [24] Li J, Zhou X X, Zhang M J et al. Temperature resolution improvement in Raman-based fiber-optic distributed sensor using dynamic difference attenuation recognition[J]. Sensors, 20, 6922(2020).

    [25] Muanenda Y S, Taki M, Nannipieri T et al. Advanced coding techniques for long-range Raman/BOTDA distributed strain and temperature measurements[J]. Journal of Lightwave Technology, 34, 342-350(2016).

    [26] Liu Z Y X, Wu H, Du H Z et al. Distributed temperature and curvature sensing based on Raman scattering in few-mode fiber[J]. IEEE Sensors Journal, 22, 22620-22626(2022).

    [27] Gasser J, Warpelin D, Bussières F et al. Distributed temperature sensor combining centimeter resolution with hundreds of meters sensing range[J]. Optics Express, 30, 6768-6777(2022).

    [28] Li J, Zhang Q, Xu Y et al. High-accuracy distributed temperature measurement using difference sensitive-temperature compensation for Raman-based optical fiber sensing[J]. Optics Express, 27, 36183-36196(2019).

    [29] Wang Z N, Fan M Q, Zhang L et al. Long-range and high-precision correlation optical time-domain reflectometry utilizing an all-fiber chaotic source[J]. Optics Express, 23, 15514-15520(2015).

    [30] Coscetta A, Catalano E, Cerri E et al. Hybrid Brillouin/Rayleigh sensor for multiparameter measurements in optical fibers[J]. Optics Express, 29, 24025-24031(2021).

    [31] Ososkov Y Z, Chernutsky A O, Dvoretskiy D A et al. Fiber optic Raman distributed temperature sensor based on an ultrashort pulse mode-locked fiber laser[J]. Optics and Spectroscopy, 127, 664-668(2019).

    [32] Sun X Z, Yang Z S, Hong X B et al. Genetic-optimised aperiodic code for distributed optical fibre sensors[J]. Nature Communications, 11, 5774(2020).

    [33] Soto M A, Nannipieri T, Signorini A et al. Raman-based distributed temperature sensor with 1 m spatial resolution over 26 km SMF using low-repetition-rate cyclic pulse coding[J]. Optics Letters, 36, 2557-2559(2011).

    [34] Rosolem J B, Bassan F R, de Freitas D E et al. Raman DTS based on OTDR improved by using gain-controlled EDFA and pre-shaped simplex code[J]. IEEE Sensors Journal, 17, 3346-3353(2017).

    [35] Liu Y P, Ma L, Yang C et al. Long-range Raman distributed temperature sensor with high spatial and temperature resolution using graded-index few-mode fiber[J]. Optics Express, 26, 20562-20571(2018).

    [36] Wang M, Wu H, Tang M et al. Few-mode fiber based Raman distributed temperature sensing[J]. Optics Express, 25, 4907-4916(2017).

    [37] Wu H, Du H Z, Zhao C et al. 24 km high-performance Raman distributed temperature sensing using low water peak fiber and optimized denoising neural network[J]. Sensors, 22, 2139(2022).

    [38] Zhou X X, Li J, Xu Y et al. Chaos Raman optical time-domain reflectometry for millimeter-level spatial resolution temperature sensing[J]. Journal of Lightwave Technology, 39, 7529-7538(2021).

    [39] Li J, Wang C Y, Cao K Y et al. Breakthrough the physical barrier on spatial resolution in Raman distributed fiber sensing using chaotic correlation demodulation[J]. APL Photonics, 8, 076105(2023).

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    Jian Li, Bowen Fan, Zijia Cheng, Xiaohui Xue, Mingjiang Zhang. Raman Distributed Optical Fiber Sensing Based on Multi-Order Time-Domain Differential Reconstruction Correlation[J]. Acta Optica Sinica, 2024, 44(1): 0106025

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    Paper Information

    Category: Fiber Optics and Optical Communications

    Received: Aug. 15, 2023

    Accepted: Oct. 16, 2023

    Published Online: Jan. 12, 2024

    The Author Email: Zhang Mingjiang (zhangmingjiang@tyut.edu.cn)

    DOI:10.3788/AOS231410

    CSTR:32393.14.AOS231410

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