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A Lab Project on the Design and Implementation of Programmable and Configurable Embedded Systems

机译:可编程和可配置嵌入式系统设计与实现的实验室项目

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Several courses on embedded systems have been planned and taught to students in Electrical Engineering and Computer Science Master's programs. The tutorials play an important role in these courses, not only to motivate the students, but also to expose them to the difficulties and challenges of designing real embedded systems. This paper presents a complete lab project used over the last 15 years in a semester-long course on embedded systems that, for historical reasons, was titled Computer Electronics. This project involves all the topics studied in this course, namely programmable, configurable and dedicated processors, memory technology and organization, peripherals, and the design and implementation of complete embedded systems. Targeting image processing as a case study, in this lab project students use field programmable gate arrays (FPGAs) to design real-time embedded systems based on soft-cores, hardware accelerators, and specific input and output peripherals. Analyzing the results over the last years, it can be concluded that the inclusion of this transversal lab project boosts the interest in this Master's course and encourages the students to learn the topics required to design real embedded systems.
机译:<?Pub Dtl?>已计划了多个嵌入式系统课程,并在电气工程和计算机科学硕士课程中教授给学生。这些教程在这些课程中起着重要作用,不仅可以激励学生,还可以使他们暴露于设计真正的嵌入式系统的困难和挑战。本文介绍了一个完整的实验室项目,该项目在过去15年中使用了一个为期一学期的嵌入式系统课程,该课程由于历史原因被称为“计算机电子学”。该项目涉及本课程中研究的所有主题,即可编程,可配置和专用处理器,内存技术和组织,外围设备以及完整嵌入式系统的设计和实现。在这个实验项目中,以图像处理为案例研究,学生使用现场可编程门阵列(FPGA)来设计基于软核,硬件加速器以及特定输入和输出外围设备的实时嵌入式系统。通过分析过去几年的结果,可以得出结论,将这个横向实验室项目包括进来可以提高对该硕士课程的兴趣,并鼓励学生学习设计真正的嵌入式系统所需的主题。

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