Top-down eLearning tools for hardware logic design

N. Fujii, S. Yukita, N. Koike, T. Kunii
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引用次数: 5

Abstract

New top-down eLearning tools for hardware logic design courses using the cellular methods are presented that enable students to keep focusing on their primary interests so that they can achieve complex logic circuits design successfully. In a modern logic design classroom, hardware description languages such as VerilogHDL are mostly used to describe circuits for FPGAs. The circuit in each module is described in VerilogHDL and the entire circuit is implemented by combination of designed modules. These HDL descriptions are wrapped in XML and enriched by a specially extended XML vocabulary, in order to share designed modules among learners on the Web. Although XML gives us a common and convenient Web framework, it becomes difficult to verify, validate, and maintain conformance among designed modules if the system becomes very large. To overcome this problem, we employed the cellular models that ensure the consistency among design modules and support a top-down design methodology. The proposed top-down eLearning tools can generate these circuit design data, distribute them to the learner, and manage the design database. The circuit design data wrapped in XML vocabulary are offered to the learner as a self-learning material of the courseware using the top-down (i.e. goal-oriented) method, according to the demand.
硬件逻辑设计的自顶向下电子学习工具
本文介绍了使用单元方法的硬件逻辑设计课程的新的自上而下的电子学习工具,使学生能够专注于他们的主要兴趣,以便他们能够成功地实现复杂的逻辑电路设计。在现代逻辑设计课堂中,硬件描述语言如VerilogHDL多用于描述fpga电路。用VerilogHDL语言描述了各个模块的电路,并结合设计的模块实现了整个电路。这些HDL描述用XML封装,并通过特别扩展的XML词汇表进行丰富,以便在Web上的学习者之间共享设计的模块。尽管XML为我们提供了一个通用且方便的Web框架,但是如果系统变得非常大,就很难验证、确认和维护设计模块之间的一致性。为了克服这个问题,我们采用了单元模型,以确保设计模块之间的一致性,并支持自上而下的设计方法。提出的自顶向下的电子学习工具可以生成这些电路设计数据,将它们分发给学习者,并管理设计数据库。采用自顶向下(即面向目标)的方法,根据学习者的需要,将封装在XML词汇表中的电路设计数据作为课件的自学材料提供给学习者。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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