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Real-Time Nonintrusive Monitoring and Prediction of Driver Fatigue

IEEE Transactions on Vehicular Technology · 2004 · Vol. 53(4) · pp. 1052–1068
Qiang JiZhiwei ZhuPing Lan

Abstract

Abstract—This paper describes a real-time online prototype driver-fatigue monitor. It uses remotely located charge-coupled-device cameras equipped with active infrared illuminators to acquire video images of the driver. Various visual cues that typically characterize the level of alertness of a person are extracted in real time and systematically combined to infer the fatigue level of the driver. The visual cues employed characterize eyelid movement, gaze movement, head movement, and facial expression. A probabilistic model is developed to model human fatigue and to predict fatigue based on the visual cues obtained. The simultaneous use of multiple visual cues and their systematic combination yields a much more robust and accurate fatigue characterization than using a single visual cue. This system was validated under real-life fatigue conditions with human subjects of different ethnic backgrounds, genders, and ages; with/without glasses; and under different illumination conditions. It was found to be reasonably robust, reliable, and accurate in fatigue characterization. Index Terms—Driver vigilance, human fatigue, probabilistic model, visual cues. I.

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744
FWCI
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References
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A general regression neural network
IEEE Transactions on Neural Networks · 1991 · 4,446 citations
Support-vector networks
Machine Learning · 1995 · 39,987 citations
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