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November 30, 2025Remote Sensing2 citationsOpen Access

Optical Remote Sensing Ship Detection Combining Channel Shuffling and Bilinear Interpolation

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SLShaodong LiuFSFaming ShaoJXJinhong Xue

Key Points

  • Enhances ship detection accuracy through a novel CSBI-YOLO model with new techniques.
  • Performance metrics showed significant improvements, with mAP50 increasing by 6% on the SlewSea-RS dataset.
  • Includes innovative features like group shuffling and edge-gated upsampling for better detection outcomes.
  • Supports enhanced monitoring of maritime targets, inviting future improvements in detection technologies.

Abstract

Maritime remote sensing ship detection has long been plagued by two major issues: the failure of geometric priors due to the extreme length-to-width ratio of ships; and the sharp drop in edge signal-to-noise ratio caused by the overlapping chromaticity domain between ships and seawater, which leads to unsatisfactory accuracy of existing detectors in such scenarios. Therefore, this paper proposes an optical remote sensing ship detection model combining channel shuffling and bilinear interpolation, named CSBI-YOLO. The core innovations include three aspects: First, a group shuffling feature enhancement module is designed, embedding parallel group bottlenecks and channel shuffling mechanisms into the interface between the YOLOv8 backbone and neck to achieve multi-scale semantic information coupling with a small number of parameters. Second, an edge-gated upsampling unit is constructed, using separable Sobel magnitude as structural prior and a learnable gating mechanism to suppress low-contrast noise on the sea surface. Third, an R-IoU-Focal loss function is proposed, introducing logarithmic curvature penalty and adaptive weights to achieve joint optimization in three dimensions: location, shape, and scale. Dual validation was conducted on the self-built SlewSea-RS dataset and the public DOTA-ship dataset. The results show that on the SlewSea-RS dataset, the mAP50 and mAP50–95 values of the CSBI-YOLO model increased by 6% and 5.4%, respectively. On the DOTA-ship dataset, comparisons with various models demonstrate that the proposed model outperforms others, proving the excellent performance of the CSBI-YOLO model in detecting maritime ship targets.

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Cite This Study

Liu et al. (2025) studied this question.

synapsesocial.com/papers/692b943e1d383f2b2a3789cahttps://doi.org/10.3390/rs17233828
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  1. 1Optical Remote Sensing Ship Detection Combining Channel Shuffling and Bilinear Interpolation2025
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  5. 5SSMA-YOLO: A Lightweight YOLO Model with Enhanced Feature Extraction and Fusion Capabilities for Drone-Aerial Ship Image Detection2024 · 33 citations