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A research-oriented course on Advanced Multicore Architecture: Contents and active learning methodologies

机译:面向研究的高级多核体系结构课程:内容和主动学习方法

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The fast evolution of multicore processors makes it difficult for professors to offer computer architecture courses with updated contents. To deal with this shortcoming that could discourage students, the most appropriate solution is a research-oriented course based on current microprocessor industry trends. Additionally, we also seek to improve the students’ skills by applying active learning methodologies, where teachers act as guiders and resource providers while students take the responsibility for their learning. In this paper, we present the Advanced Multicore Architecture (AMA) course, which follows a research-oriented approach to introduce students in architectural breakthroughs and uses active learning methodologies to enable students to develop practical research skills such as critical analysis of research papers or communication abilities. To this end five main activities are used: (i) lectures dealing with key theoretical concepts, (ii) paper review & discussion, (iii) research-oriented practical exercises, (iv) lab sessions with a state-of-the-art multicore simulator, and (v) paper presentation. An important part of all these activities is driven by active learning methodologies. Special emphasis is put on the practical side by allocating 40% of the time to labs and exercises. This work also includes an assessment study that analyzes both the course contents and the used methodology (both of them compared to other courses).
机译:多核处理器的快速发展使教授很难提供内容更新的计算机体系结构课程。为了解决可能使学生望而却步的缺点,最合适的解决方案是根据当前微处理器行业的趋势进行面向研究的课程。此外,我们还寻求通过采用积极的学习方法来提高学生的技能,在这种方法中,老师充当指导者和资源提供者,而学生则负责学习。在本文中,我们介绍了高级多核架构(AMA)课程,该课程采用研究导向的方法向学生介绍建筑方面的突破,并使用主动学习方法使学生能够开发实用的研究技能,例如对研究论文进行批判性分析或交流。能力。为此,我们使用了五项主要活动:(i)涉及关键理论概念的讲座,(ii)论文复习和讨论,(iii)以研究为导向的实践练习,(iv)具有最新技术的实验会议多核模拟器,以及(v)论文演示。所有这些活动的重要部分是由主动学习方法驱动的。通过将40%的时间分配给实验室和练习来特别强调实用性。这项工作还包括评估研究,该研究分析了课程内容和所使用的方法(两者与其他课程相比)。

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