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Features, Trends and Characteristics of Remote Access Laboratory Management Systems

机译:远程访问实验室管理系统的特征,趋势和特征

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Remote Access Laboratories are being used around the globe to enable engineering students to practice practical skills and enhance their knowledge through hands-on experimentation. These facilities also increase access by allowing users to undertake experiments anywhere anytime thus offering more flexibility and mobility. Several RAL systems have successfully met these goals. However, the role of experiment designers has rarely being explored or expanded since the conception of RAL systems. Experiments are designed and put on internet by a small group of experts in their respective fields. While these systems have been successful for universities where experts and suitable environment are available, they have rarely been used in the schools; and Science, Technology, Engineering and Mathematics (STEM) education. As the pedagogical design is now seen as a critical development in the instigation of new experiments, any RAL for STEM education initiative must address pedagogical considerations from the onset. In this paper, the common attributes of the leading RAL systems are discussed and the basic denominators are identified to establish common feature that are widely implemented in RAL systems. Limitations for their use in STEM education are analysed. The paper concludes that RAL architectures need to incorporate new aspects such as the peer-to-peer access paradigm in order to become viable STEM-based education tools.
机译:远程访问实验室正在全球范围内使用,以使工程专业的学生可以通过动手实验练习实践技能并增强其知识。这些设施还允许用户随时随地进行实验,从而增加了访问范围,从而提供了更大的灵活性和移动性。几个RAL系统已经成功实现了这些目标。但是,自从RAL系统的概念以来,很少探索或扩展实验设计者的作用。实验是由各自领域的一小撮专家设计并发布到互联网上的。这些系统在有专家和合适环境的大学中很成功,但很少在学校中使用。以及科学,技术,工程和数学(STEM)教育。由于现在将教学设计视为推动新实验的一项重要进展,因此任何用于STEM教育的RAL计划都必须从一开始就解决教学方面的问题。本文讨论了领先的RAL系统的共同属性,并确定了基本的分母来建立在RAL系统中广泛实施的共同特征。分析了在STEM教育中使用它们的局限性。本文得出的结论是,RAL架构需要纳入新的方面,例如对等访问范例,才能成为可行的基于STEM的教育工具。

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