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From gates to multi-processors learning systems hands-on with FPGA4U in a computer science programme

机译:从门到多处理器学习系统,在计算机科学程序中动手使用FPGA4U

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We present in this paper our strategy to teach computer engineering and embedded systems in our Computer Science and Communication Systems programmes. We heavily rely on the FPGA4U board [1], specifically developed for this purpose. The board is introduced early in the first year of the Bachelor for the Digital Systems course. The students' knowledge is augmented over the years with computer architecture classes up to the Master level. Master classes on embedded systems use the platform for practical hands-on exercises in short projects with emphasis on either hardware, software, or hardware/software co-design. There are three critical elements in the value of our approach: firstly, the FPGA4U board is tailored to the students' needs (extreme portability, ease of use, cost); secondly, the practical advantage of using a single hardware resource across many courses makes more challenging projects possible in less time; finally, all the knowledge acquired is shared on a collaborative web platform.The project also fosters ideas by students who can thus develop practical skills in complex embedded systems beyond curricular requirements. Several other hardware projects (such as LCD, camera, and flash memory extensions) have been pursued to expand the platform.
机译:我们在本文中介绍了在计算机科学和通信系统计划中教授计算机工程和嵌入式系统的策略。我们严重依赖于为此目的专门开发的FPGA4U板[1]。该委员会是在“数字系统”课程的学士学位的第一年年初引入的。多年来,通过计算机体系结构课程(达到硕士水平),学生的知识得到了增强。嵌入式系统上的大师班使用该平台在短期项目中进行实际动手练习,重点是硬件,软件或硬件/软件协同设计。我们的方法的价值包含三个关键要素:首先,FPGA4U开发板是根据学生的需求量身定制的(极高的可移植性,易用性,成本);其次,在许多课程中使用单一硬件资源的实际优势使得可以在更短的时间内完成更具挑战性的项目。最终,所有获得的知识都在一个协作的Web平台上共享。该项目还培养了学生的思想,他们因此可以在超出课程要求的复杂嵌入式系统中开发实用技能。为了扩展平台,已经进行了其他几个硬件项目(例如LCD,相机和闪存扩展)。

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