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首页> 外文期刊>Sadhana: Academy Proceedings in Engineering Science >Design and comparative study of discrete and module-based IGBT power converters
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Design and comparative study of discrete and module-based IGBT power converters

机译:基于分立和基于模块的IGBT功率转换器的设计与比较研究

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This paper discusses concepts of a 20 kVA power converter design and key differences between discrete IGBT and module-based design approaches. Module-based power converters have been typically employed in academic and research institutes for power levels of 10 kVA and more. However, with advancement in IGBT technologies and the growing need to minimize system size and weight, designs based on discrete devices are now an attractive alternative for such power levels. A simple procedure is presented for power converter design that includes power loss evaluation, heat-sink thermal characterization, thermal model of overall system and sizing of DC link capacitor. Using the same, a state-of-the-art discrete device and module-based power converters are designed. A comparison is subsequently made, where it is shown that discrete approach yields a compact and economic design up to a power level of 20 kVA. A key objective of this work is to lay emphasis on laboratory design of power converters. This enables a graduate level student to build a converter from start and in the process gain insights into the underlying engineering design aspects.
机译:本文讨论了20 kVA电力转换器设计的概念和离散IGBT和基于模块的设计方法之间的关键差异。基于模块的功率转换器通常用于学术和研究机构的功率水平10 kVA等。然而,随着IGBT技术的进步和日益增长的需要最小化系统尺寸和重量,基于离散器件的设计现在是这种功率水平的有吸引力的替代方案。为电源转换器设计提供了一种简单的程序,包括电源损耗评估,散热器热表征,整体系统的热模型和直流链路电容的尺寸。使用相同,设计了一种最先进的离散设备和基于模块的功率转换器。随后进行了比较,其中示出了离散方法产生紧凑且经济的设计,高达20 kVA的功率水平。这项工作的一个关键目标是强调电力转换器的实验室设计。这使得研究生级别学生能够从开始和过程中建立一个转换器,并在过程中获得潜在的工程设计方面的见解。

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