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Educating hardware design — From primary school children to postgraduate engineers

机译:教育硬件设计-从小学生到研究生工程师

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The future of hardware development lies in massively parallel hardware architectures as used in embedded as well as high-performance systems, for instance streaming-based, real-time and database applications. Especially field-programmable gate arrays provide a platform for the rapid development of integrated circuits and the accompanied software. For reasons of energy efficiency, it is increasingly important to tailor hardware directly to the application. As such systems are very complex, the training of engineers has to start early. Furthermore, the usual curricula in computer science and electrical engineering teach only basic skills. Our approach does not start with specialized courses in master or diploma programs, but already with the motivation of primary school children for technical disciplines. Girls and boys are addressed equally. In school, children are made familiar with programmable circuits and thus motivated to study computer science with a specialization in computer engineering. In this paper we present our lectures and practical courses for bachelor and master students. With examples from final bachelor and master projects we demonstrate the quality of our education and its integration into current research.
机译:硬件开发的未来在于嵌入式和高性能系统中使用的大规模并行硬件体系结构,例如基于流的,实时和数据库应用程序。特别是现场可编程门阵列为集成电路和随附软件的快速开发提供了平台。出于能源效率的考虑,直接为应用定制硬件变得越来越重要。由于此类系统非常复杂,因此工程师的培训必须尽早开始。此外,计算机科学和电气工程中的常规课程仅教授基本技能。我们的方法不是从硕士或文凭课程的专门课程开始,而是从小学生学习技术学科的动机开始。男女平等。在学校里,让孩子们熟悉可编程电路,并因此激发他们学习计算机工程专业的计算机科学的能力。在本文中,我们介绍了针对学士和硕士生的讲座和实践课程。通过最后的学士和硕士项目的实例,我们证明了我们的教育质量以及其与当前研究的融合。

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