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October 2, 2025AI4 citationsOpen Access

Deep Learning Approaches for Classifying Aviation Safety Incidents: Evidence from Australian Data

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ANAziida NanyongaKJKeith JoinerUTUğur Turhan

Key Points

  • BERT achieved near-perfect accuracy across all incident severity classes, demonstrating its effectiveness in classification.
  • The study analyzed 53,273 aviation incident records from ATSB, providing a solid dataset for evaluation.
  • Convolutional Neural Networks and LSTM also showed strong results, but fell short compared to BERT's performance.
  • Insights from this analysis may enhance future aviation safety practices and the development of predictive models.

Abstract

Aviation safety remains a critical area of research, requiring accurate and efficient classification of incident reports to enhance risk assessment and accident prevention strategies. This study evaluates the performance of three deep learning models, BERT, Convolutional Neural Networks (CNN), and Long Short-Term Memory (LSTM) for classifying incidents based on injury severity levels: Nil, Minor, Serious, and Fatal. The dataset, drawn from ATSB records covering the years 2013 to 2023, consists of 53,273 records and was used. The models were trained using a standardized preprocessing pipeline, with hyperparameter tuning to optimize performance. Model performance was evaluated using metrics such as F1-score accuracy, recall, and precision. Results revealed that BERT outperformed both LSTM and CNN across all metrics, achieving near-perfect scores (1.00) for precision, recall, F1-score, and accuracy in all classes. In comparison, LSTM achieved an accuracy of 99.01%, with strong performance in the “Nil” class, but less favorable results for the “Minor” class. CNN, with an accuracy of 98.99%, excelled in the “Fatal” and “Serious” classes, though it showed moderate performance in the “Minor” class. BERT’s flawless performance highlights the strengths of transformer architecture in processing sophisticated text classification problems. These findings underscore the strengths and limitations of traditional deep learning models versus transformer-based approaches, providing valuable insights for future research in aviation safety analysis. Future work will explore integrating ensemble methods, domain-specific embeddings, and model interpretability to further improve classification performance and transparency in aviation safety prediction.

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Cite This Study

Nanyonga et al. (2025) studied this question.

synapsesocial.com/papers/68de68e583cbc991d0a210bbhttps://doi.org/10.3390/ai6100251
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