Underwater acoustic source localization based on phase-sensitive optical time domain reflectometry

Локализация подводного акустического источника на основе фазочувствительной оптической рефлектометрии во временной области
Tingyun Wang, Fufei Pang, Zhichao Liu, Liang Zhang, Heming Wei, Zhelan Xiao, Zenghuan Qiu, Ruoqi Sun
2021-03-31

L-shaped planar sensing arrayphase-sensitive optical time domain reflectometrythree-dimensional localizationtime difference of arrivalunderwater acoustic source localization
This paper demonstrates an underwater localization system based on an improved phase-sensitive optical time domain reflectometry (φ-OTDR). To localize the underwater acoustic source, 3D-printed materials with relatively high Poisson's ratio and low elastic modulus are wrapped by single-mode optical fibers to serve as an L-shaped planar sensing array, yielding a high-fidelity retrieval of acoustic wave signals. Based on the time difference of arrival (TDOA) algorithm, the time delay of signals detected by multiple sensing elements is used to locate the underwater acoustic source. Consequently, the three-dimensional localization feasibility of the proposed system is experimentally verified, showing a measurement error of about 2% in the localization range. It indicates that the proposed scheme is of great potential for applications in the underwater environment, such as trajectory tracking, oil/gas pipeline security monitoring and coastal defense.
1
A time-difference-of-arrival algorithm determines signal delays across multiple sensing elements to estimate source position.
2
An L-shaped planar sensing array uses single-mode optical fibers wrapped around 3D-printed materials with high Poisson’s ratio and low elastic modulus.
3
An improved phase-sensitive optical time domain reflectometry system enables underwater acoustic source localization.
4
The sensing array retrieves acoustic wave signals with high fidelity for localization.
5
Three-dimensional localization was experimentally demonstrated with approximately 2% measurement error across the localization range.

Underwater acoustic source

Three-dimensional localization of the underwater acoustic source using TDOA measurements from an L-shaped fiber-optic sensing array

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Publication Date
2021-03-31
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Authors
Tingyun Wang
Fufei Pang
Zhichao Liu
Liang Zhang
Heming Wei
Zhelan Xiao
Zenghuan Qiu
Ruoqi Sun
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