Driver Drowsiness Detection Based on Steering Wheel Data Applying Adaptive Neuro-Fuzzy Feature Selection

Sensors
Sadegh ArefnezhadAli Nahvi

Abstract

This paper presents a novel feature selection method to design a non-invasive driver drowsiness detection system based on steering wheel data. The proposed feature selector can select the most related features to the drowsiness level to improve the classification accuracy. This method is based on the combination of the filter and wrapper feature selection algorithms using adaptive neuro-fuzzy inference system (ANFIS). In this method firstly, four different filter indexes are applied on extracted features from steering wheel data. After that, output values of each filter index are imported as inputs to a fuzzy inference system to determine the importance degree of each feature and select the most important features. Then, the selected features are imported to a support vector machine (SVM) for binary classification to classify the driving conditions in two classes of drowsy and awake. Finally, the classifier accuracy is exploited to adjust parameters of an adaptive fuzzy system using a particle swarm optimization (PSO) algorithm. The experimental data were collected from about 20.5 h of driving in the simulator. The results show that the drowsiness detection system is working with a high accuracy and also confirm that this metho...Continue Reading

References

Aug 13, 2013·TheScientificWorldJournal·Rong-Jiang MaJun-Yi Hu
Oct 5, 2015·Accident; Analysis and Prevention·Xuesong Wang, Chuan Xu
Sep 7, 2016·Methods : a Companion to Methods in Enzymology·Lipo WangQing Chang
Dec 6, 2017·Accident; Analysis and Prevention·Charlotte Jacobé de NauroisJean-Louis Vercher

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Citations

May 7, 2020·Optik·Ashkan Shakarami, Hadis Tarrah

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Software Mentioned

ANFIS
PSO

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