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使用多项式函数对头戴式视线追踪器中视线估计误差分布的研究。

An investigation of the distribution of gaze estimation errors in head mounted gaze trackers using polynomial functions.

作者信息

Mardanbegi Diako, Kurauchi Andrew T N, Morimoto Carlos H

机构信息

Department of Management Engineering, Technical University of Denmark, Denmark.

Department of Computer Science (IME), University of Sao Paulo, Sao Paulo, Brazil.

出版信息

J Eye Mov Res. 2018 Jun 30;11(3). doi: 10.16910/jemr.11.3.5.

Abstract

Second order polynomials are commonly used for estimating the point-of-gaze in headmounted eye trackers. Studies in remote (desktop) eye trackers show that although some non- standard 3rd order polynomial models could provide better accuracy, high-order polynomials do not necessarily provide better results. Different than remote setups though, where gaze is estimated over a relatively narrow field-of-view surface (e.g. less than 30×20 degrees on typical computer displays), head-mounted gaze trackers (HMGT) are often desired to cover a relatively wider field-of-view to make sure that the gaze is detected in the scene image even for extreme eye angles. In this paper we investigate the behavior of the gaze estimation error distribution throughout the image of the scene camera when using polynomial functions. Using simulated scenarios, we describe effects of four different sources of error: interpolation, extrapolation, parallax, and radial distortion. We show that the use of third order polynomials result in more accurate gaze estimates in HMGT, and that the use of wide angle lenses might be beneficial in terms of error reduction.

摘要

二阶多项式通常用于估计头戴式眼动仪中的注视点。对远程(桌面型)眼动仪的研究表明,尽管一些非标准的三阶多项式模型可以提供更高的精度,但高阶多项式并不一定能带来更好的结果。与远程设置不同,在远程设置中,注视点是在相对较窄的视野表面上进行估计的(例如,在典型的计算机显示器上小于30×20度),而头戴式注视跟踪器(HMGT)通常需要覆盖相对更宽的视野,以确保即使在极端眼位角度下也能在场景图像中检测到注视点。在本文中,我们研究了使用多项式函数时,注视估计误差分布在场景相机整个图像中的行为。通过模拟场景,我们描述了四种不同误差源的影响:插值、外推、视差和径向畸变。我们表明,在HMGT中使用三阶多项式可以得到更准确的注视估计,并且使用广角镜头在减少误差方面可能是有益的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fba4/7733312/b6e088256d3f/jemr-11-03-e-figure-01.jpg

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