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Modern Laboratory-Based Education for Power Electronics and Electric Machines

机译:现代实验室为基础的电力电子和电机教育

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The study of modern energy conversion draws upon a broad range of knowledge and often requires a fair amount of experience. This suggests that laboratory instruction should be an integral component of a power electronics and electric machines curriculum. However, before a single watt can be processed in a realistic way, the student must understand not only the operation of conversion systems but also more advanced concepts such as control theory, speed and position sensing, switching signal generation, gate drive isolation, circuit layout, and other critical issues. Our approach is to use a blue-box module where these details are pre-built for convenience, but not hidden from the students inside a black box. Recent improvements to our blue-box modules are described in this paper and include a dual-MOSFET control box with independently isolated FET devices, a triple silicon controlled rectifier control box, a discretely built, high quality pulse-width modulation inverter, a small discrete brushless dc drive system, and a high-performance computer-controlled brushless dc dynamometer motor drive system. Complete details, sufficient to allow the reader to duplicate these designs, are publicly available.
机译:对现代能源转换的研究需要广泛的知识,并且通常需要大量的经验。这表明实验室教学应成为电力电子和电机课程的组成部分。但是,在以实际方式处理单瓦功率之前,学生不仅必须了解转换系统的操作,还必须了解更高级的概念,例如控制理论,速度和位置感应,开关信号生成,栅极驱动隔离,电路布局,以及其他关键问题。我们的方法是使用蓝盒模块,其中的这些详细信息是为方便起见而预先构建的,但并不隐藏在黑盒内的学生中。本文介绍了我们蓝盒模块的最新改进,包括带有独立隔离FET器件的双MOSFET控制盒,三硅可控整流器控制盒,分立式构建的高质量脉宽调制逆变器以及小型分立式无刷直流驱动系统,以及高性能的计算机控制无刷直流测功机电机驱动系统。公开细节足以让读者复制这些设计。

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