Brousseau Braiden, Rose Jonathan, Eizenman Moshe
Department of Electrical and Computer Engineering, University of Toronto, Toronto, ON M5S 3G4, Canada.
Ophthalmology and Vision Sciences, University of Toronto, Toronto, ON M5T 3A9, Canada.
Vision (Basel). 2018 Aug 24;2(3):35. doi: 10.3390/vision2030035.
The most accurate remote Point of Gaze (PoG) estimation methods that allow free head movements use infrared light sources and cameras together with gaze estimation models. Current gaze estimation models were developed for desktop eye-tracking systems and assume that the relative roll between the system and the subjects' eyes (the 'R-Roll') is roughly constant during use. This assumption is not true for hand-held mobile-device-based eye-tracking systems. We present an analysis that shows the accuracy of estimating the PoG on screens of hand-held mobile devices depends on the magnitude of the R-Roll angle and the angular offset between the visual and optical axes of the individual viewer. We also describe a new method to determine the PoG which compensates for the effects of R-Roll on the accuracy of the POG. Experimental results on a prototype infrared smartphone show that for an R-Roll angle of 90 ° , the new method achieves accuracy of approximately 1 ° , while a gaze estimation method that assumes that the R-Roll angle remains constant achieves an accuracy of 3.5 ° . The manner in which the experimental PoG estimation errors increase with the increase in the R-Roll angle was consistent with the analysis. The method presented in this paper can improve significantly the performance of eye-tracking systems on hand-held mobile-devices.
最精确的允许头部自由移动的注视点(PoG)估计方法使用红外光源、摄像头以及注视估计模型。当前的注视估计模型是为桌面式眼动追踪系统开发的,并且假设在使用过程中系统与被试眼睛之间的相对滚动(“R-滚动”)大致恒定。对于基于手持移动设备的眼动追踪系统而言,这一假设并不成立。我们进行了一项分析,结果表明在手持移动设备屏幕上估计注视点的准确性取决于R-滚动角度的大小以及个体观察者视轴与光轴之间的角度偏移。我们还描述了一种新的确定注视点的方法,该方法可补偿R-滚动对注视点准确性的影响。在一款原型红外智能手机上进行的实验结果表明,对于90°的R-滚动角度,新方法的准确率约为1°,而假设R-滚动角度保持恒定的注视估计方法的准确率为3.5°。实验中注视点估计误差随R-滚动角度增加而增大的方式与分析结果一致。本文提出的方法可显著提高手持移动设备上眼动追踪系统的性能。