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Architecture for Trajectory-Based Fishing Ship Classification with AIS Data.

David Sánchez Pedroche1, Daniel Amigo1, Jesús García1

  • 1Group GIAA, University Carlos III of Madrid, 28270 Madrid, Spain.

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PubMed
Summary
This summary is machine-generated.

This study introduces a data preparation method for real-world kinematic data to detect fishing vessels using ship trajectory classification. The approach effectively handles noisy, inconsistent, and imbalanced data for improved accuracy.

Keywords:
AIS dataclass imbalancedata fusionmachine learningreal-world dataspatiotemporal data miningtrajectory classification

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Area of Science:

  • Data Science
  • Maritime Analytics
  • Machine Learning

Background:

  • Real-world kinematic data often presents challenges like noise and inconsistencies.
  • Classifying ship trajectories, particularly distinguishing fishing vessels, requires robust data handling.

Purpose of the Study:

  • To propose a data preparation process for managing real-world kinematic data.
  • To develop a binary classification model for identifying fishing vessels based on ship trajectories.

Main Methods:

  • Feature extraction from spatiotemporal data derived from Automatic Identification System (AIS) reports.
  • Application of resampling algorithms to address class imbalance in the dataset.
  • Binary classification to categorize ship trajectories as fishing or non-fishing.

Main Results:

  • The proposed data preparation process demonstrates utility in the classification task.
  • Effective handling of noisy, inconsistent, and imbalanced datasets was achieved.
  • Positive classification results were obtained with minimal contextual information.

Conclusions:

  • The developed data preparation strategy is effective for kinematic data analysis.
  • The method shows promise for identifying fishing vessels and can be adapted to other classification scenarios.
  • Minimal information is sufficient for successful ship behavior modeling and classification.