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Hybrid feature selection-based machine learning Classification system for the prediction of injury severity in single and multiple-vehicle accidents

Author

Listed:
  • Shuguang Zhang
  • Afaq Khattak
  • Caroline Mongina Matara
  • Arshad Hussain
  • Asim Farooq

Abstract

To undertake a reliable analysis of injury severity in road traffic accidents, a complete understanding of important attributes is essential. As a result of the shift from traditional statistical parametric procedures to computer-aided methods, machine learning approaches have become an important aspect in predicting the severity of road traffic injuries. The paper presents a hybrid feature selection-based machine learning classification approach for detecting significant attributes and predicting injury severity in single and multiple-vehicle accidents. To begin, we employed a Random Forests (RF) classifier in conjunction with an intrinsic wrapper-based feature selection approach called the Boruta Algorithm (BA) to find the relevant important attributes that determine injury severity. The influential attributes were then fed into a set of four classifiers to accurately predict injury severity (Naive Bayes (NB), K-Nearest Neighbor (K-NN), Binary Logistic Regression (BLR), and Extreme Gradient Boosting (XGBoost)). According to BA’s experimental investigation, the vehicle type was the most influential factor, followed by the month of the year, the driver’s age, and the alignment of the road segment. The driver’s gender, the presence of a median, and the presence of a shoulder were all found to be unimportant. According to classifier performance measures, XGBoost surpasses the other classifiers in terms of prediction performance. Using the specified attributes, the accuracy, Cohen’s Kappa, F1-Measure, and AUC-ROC values of the XGBoost were 82.10%, 0.607, 0.776, and 0.880 for single vehicle accidents and 79.52%, 0.569, 0.752, and 0.86 for multiple-vehicle accidents, respectively.

Suggested Citation

  • Shuguang Zhang & Afaq Khattak & Caroline Mongina Matara & Arshad Hussain & Asim Farooq, 2022. "Hybrid feature selection-based machine learning Classification system for the prediction of injury severity in single and multiple-vehicle accidents," PLOS ONE, Public Library of Science, vol. 17(2), pages 1-19, February.
  • Handle: RePEc:plo:pone00:0262941
    DOI: 10.1371/journal.pone.0262941
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    Cited by:

    1. Guanghui Gao & Yining Guo & Lumei Zhou & Li Li & Gang Shi, 2024. "Res2Net-based multi-scale and multi-attention model for traffic scene image classification," PLOS ONE, Public Library of Science, vol. 19(5), pages 1-26, May.
    2. Afaq Khattak & Hamad Almujibah & Ahmed Elamary & Caroline Mongina Matara, 2022. "Interpretable Dynamic Ensemble Selection Approach for the Prediction of Road Traffic Injury Severity: A Case Study of Pakistan’s National Highway N-5," Sustainability, MDPI, vol. 14(19), pages 1-18, September.
    3. Seyed Iman Mohammadpour & Majid Khedmati & Mohammad Javad Hassan Zada, 2023. "Classification of truck-involved crash severity: Dealing with missing, imbalanced, and high dimensional safety data," PLOS ONE, Public Library of Science, vol. 18(3), pages 1-22, March.

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