Title :
A novel 2-D mapping-based remote eye gaze tracking method using two IR light sources
Author :
Yong-Goo Shin ; Kang-A Choi ; Sung-Tae Kim ; Cheol-Hwan Yoo ; Sung-Jea Ko
Author_Institution :
Sch. of Electr. Eng., Korea Univ., Seoul, South Korea
Abstract :
Consumers nowadays demand for more convenient human-device interaction (HDI) in every device they use. As a part of the HDI technologies, remote eye gaze tracking (REGT) is getting more attentions. Among state-of-the-art REGT methods, the ones which utilize four infrared (IR) lights have better accuracy and robustness to head movements. In this paper, a novel glint estimation method is proposed, which enables four-glint-based REGT methods to operate with only two IR light sources. Given two glints obtained from IR light sources attached on the upper or lower corners of the screen, the proposed method estimates the other two virtual glints based on mathematical and geometric principles. Then, the point of gaze (POG) can be estimated using a mapping function established between the four glints and the screen through a user calibration process. Experimental results show that the REGT system using the proposed glint estimation method can achieve highly competitive performance compared with the ones which use four IR light sources.
Keywords :
gaze tracking; human computer interaction; image resolution; infrared imaging; infrared sources; 2D mapping-based remote eye gaze tracking method; HDI technologies; IR light sources; POG; geometric principles; glint estimation method; glint-based REGT method; head movements; human-device interaction; infrared lights; lower screen corner; mapping function; mathematical principles; point-of-gaze; upper screen corner; user calibration process; virtual glints; Calibration; Cameras; Estimation; Head; Light sources; Reflection; Vectors;
Conference_Titel :
Consumer Electronics (ICCE), 2015 IEEE International Conference on
Conference_Location :
Las Vegas, NV
Print_ISBN :
978-1-4799-7542-6
DOI :
10.1109/ICCE.2015.7066375