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A Machine Learning Framework for Automated Accident Detection Based on Multimodal Sensors in Cars

  • Hawzhin Hozhabr Pour
  • , Frédéric Li
  • , Lukas Wegmeth
  • , Christian Trense
  • , Rafał Doniec
  • , Marcin Grzegorzek
  • , Roland Wismüller
  • University of Siegen
  • University of Lübeck
  • University of Economics in Katowice

Wyniki badań: Wkład do czasopismaArtykułrecenzja

54 Cytowania z bazy Scopus

Abstrakt

Identifying accident patterns is one of the most vital research foci of driving analysis. Environmental or safety applications and the growing area of fleet management all benefit from accident detection contributions by minimizing the risk vehicles and drivers are subject to, improving their service and reducing overhead costs. Some solutions have been proposed in the past literature for automated accident detection that are mainly based on traffic data or external sensors. However, traffic data can be difficult to access, while external sensors can end up being difficult to set up and unreliable, depending on how they are used. Additionally, the scarcity of accident detection data has limited the type of approaches used in the past, leaving in particular, machine learning (ML) relatively unexplored. Thus, in this paper, we propose a ML framework for automated car accident detection based on mutimodal in-car sensors. Our work is a unique and innovative study on detecting real-world driving accidents by applying state-of-the-art feature extraction methods using basic sensors in cars. In total, five different feature extraction approaches, including techniques based on feature engineering and feature learning with deep learning are evaluated on the strategic highway research program (SHRP2) naturalistic driving study (NDS) crash data set. The main observations of this study are as follows: (1) CNN features with a SVM classifier obtain very promising results, outperforming all other tested approaches. (2) Feature engineering and feature learning approaches were finding different best performing features. Therefore, our fusion experiment indicates that these two feature sets can be efficiently combined. (3) Unsupervised feature extraction remarkably achieves a notable performance score.

Język oryginałuangielski
Numer artykułu3634
CzasopismoSensors
Tom22
Numer wydania10
Identyfikatory DOI
Status publikacjiOpublikowano - 1 maj 2022

Cele SDG ONZ

Ten wynik przyczynia się do realizacji następujących celów zrównoważonego rozwoju

  1. Cel 3 - Dobre zdrowie i dobre samopoczucie
    Cel 3 Dobre zdrowie i dobre samopoczucie

Obszary tematyczne ASJC Scopus

  • Chemia analityczna
  • Systemy informacyjne
  • Fizyka atomowa i molekularna oraz optyka
  • Biochemia
  • Instrumentacja
  • Inżynieria elektryczna i elektroniczna

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