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Computer Architecture and FPGAs: A Learning-by-Doing Methodology for Digital-Native Students

机译:计算机体系结构和FPGA:数字本地学生的边做边学的方法

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The theoretical teaching of Computer Architecture is not suitable longer. In the present time, students claim for a learning-by-doing according to their dynamic and active character. Nowadays, interactive teaching is possible thanks to the decrease in the prices of the Field Programmable Gate Arrays. This paper proposes a learning-by-doing methodology to teach Computer Architecture to first-year student who belong to a digital-native generation. The method consists in developing a whole computer from scratch while they are introduced to hardware description languages (HDL) and programmable logic devices. Firstly, students design each and every element of the computer by VHDL language. Later on, they interconnect the verified elements and test the complete computer. A FPGA-based board is needed to implement and check the correct performance of the designed computer. This educational approach is intended to be used with first-year students from Computer Engineering Degree, thus, it is the first experience of the students with the basics of Computer Architecture. Students have a computer and a FPGA-based board in anytime. In the final exam, a design of a different computer is propounded. Computer testing and programming is a requirement to pass. The high percentage of passed students corroborated the success of the methodology. Thus, computer functioning and construction is understood by a hands-on methodology at the same time as VHDL language and FPGA technology are introduced. Lack attention is avoided since students keep a dynamic role working with their personal computer and FPGA at all times. (c) 2015 Wiley Periodicals, Inc. Comput Appl Eng Educ 23:464-470, 2015; View this article online at ; DOI
机译:计算机架构的理论教学不再适合。目前,学生们根据自己的动态和积极性要求进行边做边学。如今,由于现场可编程门阵列价格的下降,交互式教学成为可能。本文提出了一种边做边学的方法,向属于数字原生代的一年级学生教授计算机架构。该方法包括在将其引入硬件描述语言(HDL)和可编程逻辑设备的同时从头开始开发整个计算机。首先,学生用VHDL语言设计计算机的每个元素。稍后,他们将经过验证的元素互连并测试整个计算机。需要基于FPGA的板来实现和检查所设计计算机的正确性能。这种教育方法旨在与计算机工程学位的一年级学生一起使用,因此,这是具有计算机体系结构基础知识的学生的首次体验。学生可以随时拥有一台计算机和一个基于FPGA的电路板。在期末考试中,提出了另一台计算机的设计方案。计算机测试和编程是必须通过的。通过率很高的学生证实了该方法的成功。因此,在引入VHDL语言和FPGA技术的同时,还可以通过动手方法来理解计算机的功能和构造。由于学生始终在动态地使用个人计算机和FPGA来工作,因此可以避免缺乏注意力。 (c)2015 Wiley Periodicals,Inc.计算应用工程学报23:464-470,2015;在以下位置在线查看本文:土井

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