Experiences with a hybrid architecture for remote laboratories

S. Murray, D. Lowe, E. Lindsay, V. Lasky, D. Liu
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引用次数: 21

Abstract

There is growing interest in the use of remote laboratories to access physical laboratory infrastructure. These laboratories can support additional practical components in courses, provide improved access at reduced cost, and encourage sharing of expensive resources. Effective design of remote laboratories requires attention to both the pedagogic design and the technical support, as well as how these elements interact. We discuss our experiences with a remote laboratory implementation based on a hybrid architecture. This architecture utilises a Web front-end allowing student access to an arbitration system, which permits students to select one of a number of experiments, before being allocated to a particular experimental station. The interaction with the equipment then occurs through a separate stand-alone application which runs on its own virtualized server which the user accesses via a remote desktop client. This hybrid architecture has many benefits, as well as some limitations. For example, it allows rich control and monitoring interfaces to be developed, but also requires students to understand a slightly more complex process for establishing the control. We discuss the reactions to this architecture by different cohorts of students as well as the extent to which the architecture facilitates evolution and expansion of the laboratories.
具有远程实验室混合架构的经验
人们对利用远程实验室访问物理实验室基础设施的兴趣日益浓厚。这些实验室可以支持课程中额外的实际组成部分,以更低的成本提供更好的访问,并鼓励共享昂贵的资源。远程实验室的有效设计需要关注教学设计和技术支持,以及这些元素如何相互作用。我们讨论了基于混合体系结构的远程实验室实现的经验。该体系结构利用Web前端,允许学生访问仲裁系统,该系统允许学生在分配到特定实验站之前从许多实验中选择一个。然后,与设备的交互通过一个单独的独立应用程序进行,该应用程序运行在用户通过远程桌面客户端访问的自己的虚拟化服务器上。这种混合体系结构有很多优点,但也有一些限制。例如,它允许开发丰富的控制和监视接口,但也要求学生理解建立控件的稍微复杂的过程。我们讨论了不同学生群体对该建筑的反应,以及该建筑在多大程度上促进了实验室的发展和扩展。
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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