Spreading remote lab usage a system — A community — A Federation

G. Alves, A. Fidalgo, A. Marques, Clara Viegas, M. Felgueiras, R. Costa, Natércia Lima, M. Castro, Gabriel Díaz-Orueta, E. San Cristóbal Ruiz, Félix García-Loro, J. García-Zubía, U. Hernández-Jayo, W. Kulesza, I. Gustavsson, A. Pester, D. Zutin, Luis C. M. Schlichting, G. Ferreira, Daniel D. de Bona, J. B. da Silva, J. Alves, S. Bilessimo, A. Pavani, D. Lima, G. Temporão, S. Marchisio, S. Concari, F. Lerro, Rubén Fernández, Hector Paz, Fernando Soria, N. Almeida, Vanderli de Oliveira, M. I. Pozzo, Elsa Dobboletta
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引用次数: 28

Abstract

Experiments have been at the heart of scientific development and education for centuries. From the outburst of Information and Communication Technologies, virtual and remote labs have added to hands-on labs a new conception of practical experience, especially in Science, Technology, Engineering and Mathematics education. This paper aims at describing the features of a remote lab named Virtual Instruments System in Reality, embedded in a community of practice and forming the spearhead of a federation of remote labs. More particularly, it discusses the advantages and disadvantages of remote labs over virtual labs as regards to scalability constraints and development and maintenance costs. Finally, it describes an actual implementation in an international community of practice of engineering schools forming the embryo of a first world wide federation of Virtual Instruments System in Reality nodes, under the framework of a project funded by the Erasmus+ Program.
推广远程实验室使用一个系统-一个社区-一个联盟
几个世纪以来,实验一直是科学发展和教育的核心。随着信息通信技术的迅猛发展,虚拟和远程实验室为动手实验室增添了一种新的实践体验概念,特别是在科学、技术、工程和数学教育中。本文旨在描述一个名为“现实中的虚拟仪器系统”的远程实验室的特点,它嵌入到一个实践社区中,并形成一个远程实验室联盟的先锋。更具体地说,它讨论了远程实验室相对于虚拟实验室在可伸缩性约束以及开发和维护成本方面的优缺点。最后,它描述了在由Erasmus+计划资助的项目框架下,在工程学校的国际实践社区中形成第一个全球虚拟仪器系统现实节点联盟的雏形的实际实施。
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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