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AIS Data-Driven Maritime Monitoring Based on Transformer: A Comprehensive Review

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arxiv 2505.07374 v1 pith:RBYVKVO4 submitted 2025-05-12 cs.AI cs.LG

AIS Data-Driven Maritime Monitoring Based on Transformer: A Comprehensive Review

classification cs.AI cs.LG
keywords dataresearchmaritimemonitoringtransformeravailablecomprehensivedata-driven
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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With the increasing demands for safety, efficiency, and sustainability in global shipping, Automatic Identification System (AIS) data plays an increasingly important role in maritime monitoring. AIS data contains spatial-temporal variation patterns of vessels that hold significant research value in the marine domain. However, due to its massive scale, the full potential of AIS data has long remained untapped. With its powerful sequence modeling capabilities, particularly its ability to capture long-range dependencies and complex temporal dynamics, the Transformer model has emerged as an effective tool for processing AIS data. Therefore, this paper reviews the research on Transformer-based AIS data-driven maritime monitoring, providing a comprehensive overview of the current applications of Transformer models in the marine field. The focus is on Transformer-based trajectory prediction methods, behavior detection, and prediction techniques. Additionally, this paper collects and organizes publicly available AIS datasets from the reviewed papers, performing data filtering, cleaning, and statistical analysis. The statistical results reveal the operational characteristics of different vessel types, providing data support for further research on maritime monitoring tasks. Finally, we offer valuable suggestions for future research, identifying two promising research directions. Datasets are available at https://github.com/eyesofworld/Maritime-Monitoring.

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Cited by 1 Pith paper

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  1. SKETCH: Semantic Key-Point Conditioning for Long-Horizon Vessel Trajectory Prediction

    cs.RO 2026-01 conditional novelty 5.0

    SKETCH conditions long-horizon vessel forecasts on a retrieved semantic Next Key Point and reports lower MSEP, MSEC, and Fréchet distance than MP-LSTM and TrAISformer on private and public AIS data.