Abstract
The methods of coarse estimation of the distance to the harmonic sound source by DAS to determine totally dielectric optical cable location are considered in this paper. Using numerical simulation, we investigated restrictions and errors of distance determination methods under the harmonic acoustic source impact. We got results for such algorithms of DAS data processing as simple triangulation algorithm and triangulation algorithm with source offset. There are determined conditions and demonstrated possibilities of applying these algorithms for optical cable location searching.
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Yokoi T., Shan J., Wade M., Macaulay J.: Digital vortex 2019. Continuous and Connected Change. Global Center for Digital Business Transformation (2019). https://www.imd.org/research-knowledge/reports/digitalvortex2019/. Accessed 11 July 2021
Udovita, P.V.M.V.D.: Conceptual review on dimensions of digital transformation in modern era. Int. J. Sci. Res. Publ. 10(2), 520–529 (2020)
Digital vortex 2021. Digital Disruption in a COVID World. Global Center for Digital Business Transformation, 2021. https://www.imd.org/research-knowledge/reports/digital-vortex-report-2021/. Accessed 11 July 2021
Abe, Y.: Beyond 5G/6G White Paper. NICT, Tokyo (2021)
Ranaweera, C., et al.: Rethinking of optical transport network design for 5G/6G mobile communication. In: IEEE Future Networks Tech Focus, vol. 12 (2021)
Burdin, V.A.: Method of Route Search and Determining Place of Optical Cable Fault. Patent RU 2656295 (2018)
Burdin, V.A., Gureev, V.O.: Method for Finding the Route of Laying an Optical Cable. Patent RU 2748310 (2021)
Gureev, V.O., Burdin, V.A., Shaban, O.V.: Optical cable location methods. Proc. SPIE 11793, 117931A (2021)
Muanenda, Y.: Recent advances in distributed acoustic sensing based on phase-sensitive optical time domain reflectometry. Hindawi J. Sens. 23(3897873), 1–16 (2018)
Liang, J., et al.: Distributed acoustic sensing for 2D and 3D acoustic source localization. Opt. Lett. 44(7), 1690–1693 (2019)
Wang, Z., Lu, B., Ye, Q., Cai, H.: Recent progress in distributed fiber acoustic sensing with Φ-OTDR. Sensors 20(22), 6594 (2020)
Hwang, J.-H., Soonwon, S., Park, C.-S.: Position estimation of sound source using three optical Mach-Zehnder acoustic sensor array. Curr. Opt. Photon. 1(6), 573–578 (2017)
Fenta, M.C., Potter, D.K., Szanyi, J.: Fibre optic methods of prospecting: a comprehensive and modern branch of geophysics. Surv. Geophys. 42, 551–584 (2021)
Lependin, L.F.: Acoustics. Higher School, Moscow (1978)
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Burdin, V., Gubareva, O.Y., Gureev, V.O. (2022). Coarse Estimation of the Distance to the Harmonic Sound Source by DAS for the Determination of Optical Cable Location. In: Koucheryavy, Y., Balandin, S., Andreev, S. (eds) Internet of Things, Smart Spaces, and Next Generation Networks and Systems. NEW2AN ruSMART 2021 2021. Lecture Notes in Computer Science(), vol 13158. Springer, Cham. https://doi.org/10.1007/978-3-030-97777-1_18
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DOI: https://doi.org/10.1007/978-3-030-97777-1_18
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