Alimisis Dimitris
EDUMOTIVA (European Lab for Educational Technology), Kapnikareas 19A, Athens, 10556, Greece.
Open Res Eur. 2021 Jun 18;1:40. doi: 10.12688/openreseurope.13321.2. eCollection 2021.
The H2020 project "INBOTS: Inclusive Robotics for a Better Society" (2018--21) has worked in different disciplines involved in the acceptance and uptake of interactive robotics, including the promotion of accessible and multidisciplinary education programs. In INBOTS, educational robotics is considered as a learning tool that can bring robotics into school classrooms and benefit all children regardless of their future educational or professional orientation. Aiming to make robotics education inclusive, INBOTS has introduced a paradigm shift inspired by sound pedagogies (Papert's constructionism) and emerging educational trends (the maker movement) and focused on creativity and other 21 -century skills. However, the realisation of this new paradigm requires appropriate curricula and technologies at both hardware and software levels. This paper addresses several questions and dilemmas related to the technologies currently in use in robotics education and the kind of technologies that can best support the proposed paradigm. This discussion results in specific criteria that robotics technologies must fulfil to foster the new paradigm. Based on these criteria, we review some representative technologies in both hardware and software. Then, we identify and discuss some technological solutions that exemplify the kind of technologies that can best support inclusive robotics education and make the proposed paradigm feasible. Finally, we show how some of these technologies can be combined to design a creative and inclusive project consistent with the criteria set in this paper.
“INBOTS:面向更美好社会的包容性机器人技术”(2018 - 2021)这一“地平线2020”项目在涉及交互式机器人技术接受和应用的不同学科领域开展工作,包括推广无障碍和多学科教育项目。在INBOTS项目中,教育机器人技术被视为一种学习工具,它可以将机器人技术引入学校课堂,使所有儿童受益,无论他们未来的教育或职业方向如何。为了使机器人技术教育具有包容性,INBOTS引入了一种范式转变,其灵感来自合理的教学法(佩珀特的建构主义)和新兴的教育趋势(创客运动),并专注于创造力和其他21世纪技能。然而,这种新范式的实现需要在硬件和软件层面都有合适的课程和技术。本文探讨了与机器人技术教育中当前使用的技术以及最能支持所提出范式的技术类型相关的几个问题和困境。这一讨论得出了机器人技术必须满足的特定标准,以促进新范式的发展。基于这些标准,我们回顾了硬件和软件方面的一些代表性技术。然后,我们识别并讨论了一些技术解决方案,这些方案体现了最能支持包容性机器人技术教育并使所提出的范式可行的技术类型。最后,我们展示了其中一些技术如何能够结合起来,设计出一个符合本文所设定标准的具有创造性和包容性的项目。