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May 31, 2026Journal of Marine Science and Engineering0 citationsOpen Access

Sea Bottom Line Tracking in Side-Scan Sonar Images Using WTMM-Based Edge Detection

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JDJisheng DingFJFengbiao JiangFWFangqi Wang

Key Points

  • The aim is to improve the tracking of the sea bottom line in high-resolution side-scan sonar images.
  • Applied wavelet transform modulus maxima for multi-scale edge detection.
  • Conducted experiments with sonar images and varying levels of noise.
  • Comparative analysis against existing baseline tracking methods.
  • Proposed method significantly improved tracking accuracy compared to baseline methods under noise conditions.
  • Demonstrated effective localization of sea bottom line features in sonar imagery.
  • Wavelet transform analysis notably enhanced edge information extraction despite high noise.

Abstract

The topographic features of the seafloor can be observed clearly via high-resolution side-scan sonar imagery. However, the faithful interpretation of a sonar image depends strongly on the accuracy with which the location of the sea bottom line can be tracked within the image, and current tracking methods function poorly under high sonar signal noise or suffer from high complexity. The present work addresses this issue by applying the characteristics of simple sonar waterfall maps in conjunction with robust edge detection and multi-scale analysis based on wavelet transform modulus maxima. The proposed tracking method is demonstrated to provide superior effectiveness and accuracy in comparison with existing baseline methods based on the results of experiments conducted with a representative side-scan sonar image with and without applied speckle noise. This superiority can be attributed to the good localization characteristics and multi-scale detection features of wavelet transform analysis, which can suppress the impact of noise in the sonar image on the accurate extraction of edge information.

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Cite This Study

Ding et al. (2026) studied this question.

synapsesocial.com/papers/6a1bd2ab5783ba022b6fe2a0https://doi.org/10.3390/jmse14111002
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