大范围运动远程眼动追踪系统的设计问题

Laura Sesma, A. Villanueva, R. Cabeza
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引用次数: 3

摘要

眼动追踪社区的目标之一是建立允许用户自由移动的系统。一般来说,眼动追踪系统的视野和注视估计精度之间存在权衡。我们的目标是研究眼动追踪系统的视野可以增加多少,同时保持可接受的精度。在本文中,我们研究了在模拟环境中具有大范围运动的远程眼动追踪系统的所有问题,并给出了一些指导方针,可以促进眼动追踪器的设计过程。给定期望的运动范围和工作距离,我们可以计算相机焦距和传感器尺寸,或者给定某个相机,我们可以确定用户的运动范围。分析了两种基于红外光的注视估计方法:插值法和几何法对头部大运动的鲁棒性。我们将注视估计方法的精度与特定特征检测器的眼睛周围区域的图像分辨率联系起来,并为不同的注视估计精度提供了像素大小和焦距的可能组合。最后,我们给出了注视估计精度作为新定义的眼误差的函数,它与任何设计参数无关。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design issues of remote eye tracking systems with large range of movement
One of the goals of the eye tracking community is to build systems that allow users to move freely. In general, there is a trade-off between the field of view of an eye tracking system and the gaze estimation accuracy. We aim to study how much the field of view of an eye tracking system can be increased, while maintaining acceptable accuracy. In this paper, we investigate all the issues concerning remote eye tracking systems with large range of movement in a simulated environment and we give some guidelines that can facilitate the process of designing an eye tracker. Given a desired range of movement and a working distance, we can calculate the camera focal length and sensor size or given a certain camera, we can determine the user's range of movement. The robustness against large head movement of two gaze estimation methods based on infrared light is analyzed: an interpolation and a geometrical method. We relate the accuracy of the gaze estimation methods with the image resolution around the eye area for a certain feature detector's accuracy and provide possible combinations of pixel size and focal length for different gaze estimation accuracies. Finally, we give the gaze estimation accuracy as a function of a new defined eye error, which is independent of any design parameters.
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