A. Khaleel, Thekra H. Abbas, Abdul-Wahab Sami Ibrahim
{"title":"Best low-cost methods for real-time detection of the eye and gaze tracking","authors":"A. Khaleel, Thekra H. Abbas, Abdul-Wahab Sami Ibrahim","doi":"10.1515/icom-2023-0026","DOIUrl":null,"url":null,"abstract":"Abstract The study of gaze tracking is a significant research area in computer vision. It focuses on real-world applications and the interface between humans and computers. Recently, new eye-tracking applications have boosted the need for low-cost methods. The eye region is a crucial aspect of tracking the direction of the gaze. In this paper, several new methods have been proposed for eye-tracking by using methods to determine the eye area as well as find the direction of gaze. Unmodified webcams can be used for eye-tracking without the need for specialized equipment or software. Two methods for determining the eye region were used: facial landmarks or the Haar cascade technique. Moreover, the direct method, based on the convolutional neural network model, and the engineering method, based on distances determining the iris region, were used to determine the eye’s direction. The paper uses two engineering techniques: drawing perpendicular lines on the iris region to identify the gaze direction junction point and dividing the eye region into five regions, with the blackest region representing the gaze direction. The proposed network model has proven effective in determining the eye’s gaze direction within limited mobility, while engineering methods improve their effectiveness in wide mobility.","PeriodicalId":37105,"journal":{"name":"i-com","volume":"18 6","pages":""},"PeriodicalIF":0.0000,"publicationDate":"2024-01-08","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"i-com","FirstCategoryId":"1085","ListUrlMain":"https://doi.org/10.1515/icom-2023-0026","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"Q1","JCRName":"Social Sciences","Score":null,"Total":0}
引用次数: 0
Abstract
Abstract The study of gaze tracking is a significant research area in computer vision. It focuses on real-world applications and the interface between humans and computers. Recently, new eye-tracking applications have boosted the need for low-cost methods. The eye region is a crucial aspect of tracking the direction of the gaze. In this paper, several new methods have been proposed for eye-tracking by using methods to determine the eye area as well as find the direction of gaze. Unmodified webcams can be used for eye-tracking without the need for specialized equipment or software. Two methods for determining the eye region were used: facial landmarks or the Haar cascade technique. Moreover, the direct method, based on the convolutional neural network model, and the engineering method, based on distances determining the iris region, were used to determine the eye’s direction. The paper uses two engineering techniques: drawing perpendicular lines on the iris region to identify the gaze direction junction point and dividing the eye region into five regions, with the blackest region representing the gaze direction. The proposed network model has proven effective in determining the eye’s gaze direction within limited mobility, while engineering methods improve their effectiveness in wide mobility.
摘要 注视跟踪研究是计算机视觉的一个重要研究领域。它侧重于现实世界的应用以及人与计算机之间的界面。最近,新的眼球跟踪应用促进了对低成本方法的需求。眼球区域是跟踪注视方向的一个重要方面。本文提出了几种新的眼球跟踪方法,这些方法既能确定眼球区域,又能找到注视方向。未经改装的网络摄像头可用于眼球跟踪,无需专门的设备或软件。确定眼部区域的方法有两种:面部地标或 Haar 级联技术。此外,还使用了基于卷积神经网络模型的直接方法和基于确定虹膜区域距离的工程方法来确定眼睛的方向。本文采用了两种工程技术:在虹膜区域画垂直线来确定注视方向交界点,以及将眼球区域划分为五个区域,其中最黑的区域代表注视方向。事实证明,所提出的网络模型能在有限的移动范围内有效确定眼睛的注视方向,而工程方法则能提高其在广泛移动范围内的有效性。