On the Development of a Personalized Augmented Reality Spatial Ability Training Mobile Application

Christos Papakostas, C. Troussas, Akrivi Krouska, C. Sgouropoulou
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引用次数: 3

Abstract

Augmented Reality has been integrated in educational settings in the field of engineering. Prior research has examined the learning outcomes and the pedagogical affordances of this technology. However, training undergraduate engineers, from diverse knowledge level, requires customized training approach, tailored to the individual learning pace. In this paper, we present PARSAT (Personalized Augmented Reality Spatial Ability Training), which is a mobile Augmented Reality application for the enhancement of students’ spatial visualization skills. The application takes into account the theoretical contents of engineering design, deployed through video tutorials, and student-computer interaction with 3D objects. Students interpret different views of a 3D object, which are represented on their mobile screen. PARSAT efficaciously strengthens students’ recognition of spatial structures and views, adjusted to the fulfillment of their personal needs. In terms of personalization, PARSAT consists of different levels, which do not follow a linear flow, as each student takes part in a different sequence of activities, according to their time spent in the 3D object manipulation, and their assessment scores at the end of each level. Furthermore, an agent is used to analyze students’ knowledge level, and send them feedback. The system reduces unnecessary cognitive load and, at the same time, improves students learning experience in learning engineering drawing.
个性化增强现实空间能力训练移动应用开发研究
增强现实已经被整合到工程领域的教育环境中。先前的研究已经检验了这种技术的学习成果和教学启示。然而,从不同的知识水平培养本科工程师,需要定制的培训方法,量身定制的个人学习速度。在本文中,我们介绍了PARSAT(个性化增强现实空间能力训练),这是一个用于增强学生空间可视化技能的移动增强现实应用程序。该应用程序考虑了工程设计的理论内容,通过视频教程和学生与计算机与3D对象的交互进行部署。学生们解读3D物体的不同视角,这些视角呈现在他们的移动屏幕上。PARSAT有效地加强了学生对空间结构和景观的认识,并根据他们的个人需求进行调整。在个性化方面,PARSAT由不同的级别组成,并不遵循线性流程,因为每个学生根据他们在3D对象操作上花费的时间以及他们在每个级别结束时的评估分数参加不同的活动序列。在此基础上,利用agent分析学生的知识水平,并向学生发送反馈信息。该系统减少了不必要的认知负荷,同时提高了学生在工程制图学习中的学习体验。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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