分布式嵌入式系统中学生学习的框架体系结构

W. L. Honig, Konstantin Läufer, G. Thiruvathukal
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引用次数: 3

摘要

专注于个人微型计算机或客户机/服务器应用程序的学术课程不再足以让学生发展嵌入式系统的知识。当前和近期的工业系统采用多个相互作用的组件以及新的网络和安全方法;因此,学术准备需要教学生开发与这些现实世界产品相媲美的现实项目。然而,这些现实世界产品的复杂性、广度和技术变化很难在课堂上重现。本文概述了适用于包括物联网在内的现代嵌入式系统学术教学的框架体系结构的初步工作。它定义了四层,其中两层位于网络的边缘,在学术界没有得到充分的研究。对于体系结构的每一层,都确定了特定的技术和合适的设备。确定了使用基于体系结构的项目的课程的期望学术成果。针对基于该框架的学生课程和研究活动对实际嵌入式系统开发人员的有效性,寻求反馈和比较。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A framework architecture for student learning in distributed embedded systems
Academic courses focused on individual microcomputers or client/server applications are no longer sufficient for students to develop knowledge in embedded systems. Current and near-term industrial systems employ multiple interacting components and new network and security approaches; hence, academic preparation requires teaching students to develop realistic projects comparable to these real-world products. However, the complexity, breadth, and technical variations of these real-world products are difficult to reproduce in the classroom. This paper outlines preliminary work on a framework architecture suitable for academic teaching of modern embedded systems including the Internet of Things. It defines four layers, two of which are at the edges of the network, and not adequately covered in academia. For each layer of the architecture, specific technology and suitable devices are identified. Desired academic outcomes for courses using projects based on the architecture are identified. Feedback and comparison is sought on how effective student course and research activities based on the framework will be to real-world embedded systems developers.
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