Title :
Real-Time Gaze Estimator Based on Driver´s Head Orientation for Forward Collision Warning System
Author :
Lee, Sung Joo ; Jo, Jaeik ; Jung, Ho Gi ; Park, Kang Ryoung ; Kim, Jaihie
Author_Institution :
Biometrics Eng. Res. Center, Yonsei Univ., Seoul, South Korea
fDate :
3/1/2011 12:00:00 AM
Abstract :
This paper presents a vision-based real-time gaze zone estimator based on a driver´s head orientation composed of yaw and pitch. Generally, vision-based methods are vulnerable to the wearing of eyeglasses and image variations between day and night. The proposed method is novel in the following four ways: First, the proposed method can work under both day and night conditions and is robust to facial image variation caused by eyeglasses because it only requires simple facial features and not specific features such as eyes, lip corners, and facial contours. Second, an ellipsoidal face model is proposed instead of a cylindrical face model to exactly determine a driver´s yaw. Third, we propose new features-the normalized mean and the standard deviation of the horizontal edge projection histogram-to reliably and rapidly estimate a driver´s pitch. Fourth, the proposed method obtains an accurate gaze zone by using a support vector machine. Experimental results from 200 000 images showed that the root mean square errors of the estimated yaw and pitch angles are below 7 under both daylight and nighttime conditions. Equivalent results were obtained for drivers with glasses or sunglasses, and 18 gaze zones were accurately estimated using the proposed gaze estimation method.
Keywords :
alarm systems; edge detection; eye protection; face recognition; feature extraction; mean square error methods; real-time systems; support vector machines; traffic engineering computing; driver head orientation; edge projection histogram; ellipsoidal face model; eyeglass; facial image variation; forward collision warning system; real time gaze estimation; root mean square error; support vector machine; yaw and pitch angle; Driver monitoring system; forward collision warning (FCW) system; gaze estimation; head orientation estimation; precrash system;
Journal_Title :
Intelligent Transportation Systems, IEEE Transactions on
DOI :
10.1109/TITS.2010.2091503