Using the Proteus virtual environment to train future IT professionals

V. Shamonia, O. Semenikhina, V. Proshkin, O. Lebid, S. Kharchenko, O. Lytvyn
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引用次数: 16

Abstract

Based on literature review it was established that the use of augmented reality as an innovative technology of student training occurs in following directions: 3D image rendering; recognition and marking of real objects; interaction of a virtual object with a person in real time. The main advantages of using AR and VR in the educational process are highlighted: clarity, ability to simulate processes and phenomena, integration of educational disciplines, building an open education system, increasing motivation for learning, etc. It has been found that in the field of physical process modelling the Proteus Physics Laboratory is a popular example of augmented reality. Using the Proteus environment allows to visualize the functioning of the functional nodes of the computing system at the micro level. This is especially important for programming systems with limited resources, such as microcontrollers in the process of training future IT professionals. Experiment took place at Borys Grinchenko Kyiv University and Sumy State Pedagogical University named after A. S. Makarenko with students majoring in Computer Science (field of knowledge is Secondary Education (Informatics)). It was found that computer modelling has a positive effect on mastering the basics of microelectronics. The ways of further scientific researches for grounding, development and experimental verification of forms, methods and augmented reality, and can be used in the professional training of future IT specialists are outlined in the article.
使用Proteus虚拟环境培训未来的IT专业人员
在文献综述的基础上,我们发现增强现实作为一种创新的学生培训技术,主要体现在以下几个方面:3D图像渲染;对实物的识别和标记;虚拟物体与人的实时交互。在教育过程中使用AR和VR的主要优点是:清晰,能够模拟过程和现象,整合教育学科,构建开放的教育体系,增加学习动机等。人们发现,在物理过程建模领域,Proteus物理实验室是增强现实的一个流行例子。使用Proteus环境可以在微观层面上可视化计算系统的功能节点的功能。这对于资源有限的编程系统尤其重要,例如在培训未来IT专业人员的过程中的微控制器。实验在基辅大学和以A. S. Makarenko命名的Sumy国立师范大学进行,学生主修计算机科学(知识领域是中等教育(信息学))。研究发现,计算机建模对掌握微电子学的基础知识有积极的作用。本文概述了形式、方法和增强现实的基础、开发和实验验证的进一步科学研究的方法,并可用于未来IT专家的专业培训。
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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