ANALYSIS, MODELING AND CONTROL OF POWER ELECTRONIC SYSTEMS AND THEIR SIMULATION AS AN EDUCATIONAL SUPPORT

Juraj Šimko, Michal Praženica, R. Koňarik
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Abstract

Power semiconductor devices are frequently used in contemporary world. They are used in all areas of everyday life and industrial applications. Thanks to this fact, it is necessary for current and new professionals to be trained and educated in the given theory. Part of this theory, in which our students are educated is the state space analysis of power systems, which represents their mathematical descriptions. Therefore, we created multiple simulation models of many power electronic systems. These models are used by students to verify the correctness of the performed state space analysis of the systems and to compare their results with classical circuit wiring diagram. The aim of such a simulation models is to introduce students to the variety of possibilities to analyze power electronic systems, understanding of their functionality, and also their open loop or closed loop control. There are also other benefits, like deeper understanding of mathematical skills. This paper describes multiple simulation models (topologies) of power systems, their analysis and control.
电力电子系统的分析、建模和控制及其仿真教学支持
功率半导体器件是当今世界广泛使用的器件。它们用于日常生活和工业应用的各个领域。由于这一事实,有必要对现有和新的专业人员进行给定理论的培训和教育。这个理论的一部分,我们的学生所学习的是电力系统的状态空间分析,它代表了它们的数学描述。因此,我们建立了多个电力电子系统的仿真模型。这些模型被学生用来验证所执行的系统状态空间分析的正确性,并将其结果与经典电路接线图进行比较。这样一个仿真模型的目的是向学生介绍各种可能性来分析电力电子系统,了解他们的功能,以及他们的开环或闭环控制。还有其他好处,比如加深对数学技能的理解。本文介绍了电力系统的多种仿真模型(拓扑)及其分析和控制。
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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