DocumentCode :
1403443
Title :
Accurate Eye Center Location through Invariant Isocentric Patterns
Author :
Valenti, R. ; Gevers, T.
Author_Institution :
Intell. Syst. Lab. Amsterdam, Univ. of Amsterdam, Amsterdam, Netherlands
Volume :
34
Issue :
9
fYear :
2012
Firstpage :
1785
Lastpage :
1798
Abstract :
Locating the center of the eyes allows for valuable information to be captured and used in a wide range of applications. Accurate eye center location can be determined using commercial eye-gaze trackers, but additional constraints and expensive hardware make these existing solutions unattractive and impossible to use on standard (i.e., visible wavelength), low-resolution images of eyes. Systems based solely on appearance are proposed in the literature, but their accuracy does not allow us to accurately locate and distinguish eye centers movements in these low-resolution settings. Our aim is to bridge this gap by locating the center of the eye within the area of the pupil on low-resolution images taken from a webcam or a similar device. The proposed method makes use of isophote properties to gain invariance to linear lighting changes (contrast and brightness), to achieve in-plane rotational invariance, and to keep low-computational costs. To further gain scale invariance, the approach is applied to a scale space pyramid. In this paper, we extensively test our approach for its robustness to changes in illumination, head pose, scale, occlusion, and eye rotation. We demonstrate that our system can achieve a significant improvement in accuracy over state-of-the-art techniques for eye center location in standard low-resolution imagery.
Keywords :
eye; image resolution; object detection; object tracking; Webcam; commercial eye-gaze tracker; eye center location; eye center movement; eye rotation; facial feature detection; head pose; illumination; in-plane rotational invariance; invariant isocentric pattern; isophote properties; linear lighting change; low-computational cost; low-resolution image; occlusion; pupil; scale invariance; scale space pyramid; Analytical models; Face; Feature extraction; Image edge detection; Image resolution; Microwave integrated circuits; Vectors; Eye center location; facial features detection.; isophotes; Algorithms; Artificial Intelligence; Databases, Factual; Eye Movements; Face; Humans; Image Processing, Computer-Assisted; Iris; Lighting; Pattern Recognition, Automated; Pupil;
fLanguage :
English
Journal_Title :
Pattern Analysis and Machine Intelligence, IEEE Transactions on
Publisher :
ieee
ISSN :
0162-8828
Type :
jour
DOI :
10.1109/TPAMI.2011.251
Filename :
6109281
Link To Document :
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