Time-Frequency Feature Extraction Method for Weak Acoustic Signals from Drill Pipe of Seafloor Drill

The acoustic signals of the drill pipe of a seafloor drill present weak features under noise interference such as marine environmental noise and the mechanical vibration of the seafloor drill. Accurately extracting the features of the weak acoustic signals of a drill pipe under a strong background n...

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Main Authors: Jingwei Xu, Buyan Wan, Weicai Quan, Yi Xi, Xianglin Tian
Format: Article
Language:English
Published: MDPI AG 2025-04-01
Series:Journal of Marine Science and Engineering
Subjects:
Online Access:https://www.mdpi.com/2077-1312/13/4/740
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author Jingwei Xu
Buyan Wan
Weicai Quan
Yi Xi
Xianglin Tian
author_facet Jingwei Xu
Buyan Wan
Weicai Quan
Yi Xi
Xianglin Tian
author_sort Jingwei Xu
collection DOAJ
description The acoustic signals of the drill pipe of a seafloor drill present weak features under noise interference such as marine environmental noise and the mechanical vibration of the seafloor drill. Accurately extracting the features of the weak acoustic signals of a drill pipe under a strong background noise is an effective means of realizing wireless acoustic communication for a seafloor drill. However, the existing short-time Fourier transform and wavelet transform methods have the defects of fixed window length, wavelet basis function, and decomposition layers, which lead to the inability to accurately extract the weak acoustic signal features of a drill pipe. To overcome these challenges, this study investigates the application of S-transform (ST) in the weak acoustic signal feature extraction of a seafloor drill pipe based on its fundamental principles. Firstly, a time-frequency analysis of the drill pipe’s acoustic signal using ST is conducted, which yields the distribution of the signal across the time and frequency axes. Secondly, singular value decomposition (SVD) is applied to mitigate the noise within the time-frequency matrix. Finally, the noise-reduced time-frequency matrix is analyzed to extract the subtle features of the acoustic wave present within the signal. In order to more accurately assess the differences between the different time-frequency analysis methods in the extraction of weak acoustic wave signals, short-time Fourier transform, wavelet transform, and ST are used to extract the weak acoustic wave characteristics of the drill pipe, respectively. The results show that the ST-based method can effectively improve the accuracy of weak acoustic wave signal feature extraction and provide strong support for reliable transmission of cone penetration test data from the seafloor drill.
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spelling doaj-art-fa702b58a04344e5ac401b1d4ac8b24f2025-08-20T02:18:09ZengMDPI AGJournal of Marine Science and Engineering2077-13122025-04-0113474010.3390/jmse13040740Time-Frequency Feature Extraction Method for Weak Acoustic Signals from Drill Pipe of Seafloor DrillJingwei Xu0Buyan Wan1Weicai Quan2Yi Xi3Xianglin Tian4National-Local Joint Engineering Laboratory of Marine Mineral Resources Exploration Equipment and Safety Technology, Hunan University of Science and Technology, Xiangtan 411201, ChinaNational-Local Joint Engineering Laboratory of Marine Mineral Resources Exploration Equipment and Safety Technology, Hunan University of Science and Technology, Xiangtan 411201, ChinaNational-Local Joint Engineering Laboratory of Marine Mineral Resources Exploration Equipment and Safety Technology, Hunan University of Science and Technology, Xiangtan 411201, ChinaSchool of Mechanical Engineering, Hunan University of Science and Technology, Xiangtan 411201, ChinaSchool of Mechanical Engineering, Hunan University of Science and Technology, Xiangtan 411201, ChinaThe acoustic signals of the drill pipe of a seafloor drill present weak features under noise interference such as marine environmental noise and the mechanical vibration of the seafloor drill. Accurately extracting the features of the weak acoustic signals of a drill pipe under a strong background noise is an effective means of realizing wireless acoustic communication for a seafloor drill. However, the existing short-time Fourier transform and wavelet transform methods have the defects of fixed window length, wavelet basis function, and decomposition layers, which lead to the inability to accurately extract the weak acoustic signal features of a drill pipe. To overcome these challenges, this study investigates the application of S-transform (ST) in the weak acoustic signal feature extraction of a seafloor drill pipe based on its fundamental principles. Firstly, a time-frequency analysis of the drill pipe’s acoustic signal using ST is conducted, which yields the distribution of the signal across the time and frequency axes. Secondly, singular value decomposition (SVD) is applied to mitigate the noise within the time-frequency matrix. Finally, the noise-reduced time-frequency matrix is analyzed to extract the subtle features of the acoustic wave present within the signal. In order to more accurately assess the differences between the different time-frequency analysis methods in the extraction of weak acoustic wave signals, short-time Fourier transform, wavelet transform, and ST are used to extract the weak acoustic wave characteristics of the drill pipe, respectively. The results show that the ST-based method can effectively improve the accuracy of weak acoustic wave signal feature extraction and provide strong support for reliable transmission of cone penetration test data from the seafloor drill.https://www.mdpi.com/2077-1312/13/4/740drill pipe of seafloor drillSTwavelet transformsingular value decompositionweak acoustic signals
spellingShingle Jingwei Xu
Buyan Wan
Weicai Quan
Yi Xi
Xianglin Tian
Time-Frequency Feature Extraction Method for Weak Acoustic Signals from Drill Pipe of Seafloor Drill
Journal of Marine Science and Engineering
drill pipe of seafloor drill
ST
wavelet transform
singular value decomposition
weak acoustic signals
title Time-Frequency Feature Extraction Method for Weak Acoustic Signals from Drill Pipe of Seafloor Drill
title_full Time-Frequency Feature Extraction Method for Weak Acoustic Signals from Drill Pipe of Seafloor Drill
title_fullStr Time-Frequency Feature Extraction Method for Weak Acoustic Signals from Drill Pipe of Seafloor Drill
title_full_unstemmed Time-Frequency Feature Extraction Method for Weak Acoustic Signals from Drill Pipe of Seafloor Drill
title_short Time-Frequency Feature Extraction Method for Weak Acoustic Signals from Drill Pipe of Seafloor Drill
title_sort time frequency feature extraction method for weak acoustic signals from drill pipe of seafloor drill
topic drill pipe of seafloor drill
ST
wavelet transform
singular value decomposition
weak acoustic signals
url https://www.mdpi.com/2077-1312/13/4/740
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AT buyanwan timefrequencyfeatureextractionmethodforweakacousticsignalsfromdrillpipeofseafloordrill
AT weicaiquan timefrequencyfeatureextractionmethodforweakacousticsignalsfromdrillpipeofseafloordrill
AT yixi timefrequencyfeatureextractionmethodforweakacousticsignalsfromdrillpipeofseafloordrill
AT xianglintian timefrequencyfeatureextractionmethodforweakacousticsignalsfromdrillpipeofseafloordrill