Department of Computer Science and Information Engineering, National Taipei University of Technology, Taipei 10608, Taiwan.
Department of Digital Humanities and Information Applications, Aletheia University, New Taipei City, Taiwan.
Sensors (Basel). 2020 Mar 30;20(7):1917. doi: 10.3390/s20071917.
In this study, a head-mounted device was developed to track the gaze of the eyes and estimate the gaze point on the user's visual plane. To provide a cost-effective vision tracking solution, this head-mounted device is combined with a sized endoscope camera, infrared light, and mobile phone; the devices are also implemented via 3D printing to reduce costs. Based on the proposed image pre-processing techniques, the system can efficiently extract and estimate the pupil ellipse from the camera module. A 3D eye model was also developed to effectively locate eye gaze points from extracted eye images. In the experimental results, average accuracy, precision, and recall rates of the proposed system can achieve an average of over 97%, which can demonstrate the efficiency of the proposed system. This study can be widely used in the Internet of Things, virtual reality, assistive devices, and human-computer interaction applications.
在这项研究中,我们开发了一种头戴式设备来跟踪眼睛的注视,并估计用户视觉平面上的注视点。为了提供具有成本效益的视觉跟踪解决方案,该头戴式设备结合了尺寸合适的内窥镜相机、红外光和手机;这些设备还通过 3D 打印来降低成本。基于提出的图像预处理技术,系统可以从相机模块中高效地提取和估计瞳孔椭圆。还开发了一个 3D 眼睛模型,以便从提取的眼睛图像中有效地定位眼睛注视点。在实验结果中,所提出系统的平均准确率、精度和召回率均可达到 97%以上,这表明了该系统的高效性。本研究可广泛应用于物联网、虚拟现实、辅助设备和人机交互应用中。