增强现实和机器人教育:系统的文献综述

Christina Pasalidou , Chris Lytridis , Avgoustos Tsinakos , Nikolaos Fachantidis
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引用次数: 0

摘要

将尖端科技融入教育一直是提高教学和学习体验的目标。增强现实(AR)和机器人技术是两种新兴技术,它们在改变教育环境方面显示出了希望。本文系统地回顾了AR和机器人技术在教育方面的结合,确定了关键的应用、好处和趋势。使用PRISMA方法,我们分析了来自五个主要数据库的69项相关研究,并将其分为三个主题:(a) AR和社会辅助机器人(SAR), (b) AR辅助教育机器人,以及(c)机器人/工程教育中的AR。该评论提供了关于ar增强机器人在小学,中学和高等教育中的不同应用如何提供可视化,多模态反馈和沉浸式体验的见解。主要研究结果表明,虽然增强现实的互动功能和机器人的体现在学习、培养动机、兴奋、积极态度和丰富的教育体验方面显示出有希望的结果,但技术复杂性和成本等挑战仍然是广泛采用的障碍。未来的研究应该集中在教学框架和大规模实施上,以优化ar机器人在不同教育环境中的集成。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Augmented reality and robotics in education: A systematic literature review
Integrating cutting-edge technologies into education has been a continuous goal to enhance teaching and learning experiences. Augmented Reality (AR) and robotics are two emerging technologies that have shown promise in transforming educational environments. This paper presents a systematic review of the literature on the combination of AR and robotics for educational purposes, identifying key applications, benefits, and trends. Using the PRISMA methodology, 69 relevant studies from five major databases were analysed and categorised into three themes: (a) AR and Socially Assistive Robots (SAR), (b) AR-assisted educational robotics, and (c) AR in robotics/engineering education. The review provides insights into how different AR-enhanced robotics applications across primary, secondary, and higher education, provide visualizations, multimodal feedback, and immersive experiences. Key findings suggest that while interactive features of AR and the embodiment of robots show promising results for learning, fostering motivation, excitement, positive attitudes, and enriched educational experiences, challenges such as technological complexity and cost remain barriers to widespread adoption. Future research should focus on pedagogical frameworks and large-scale implementations to optimize AR-robotics integration in diverse educational settings.
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