基于电热演化方法的多电平变换器多目标设计工具

G. Adinolfi, R. Ciavarella, G. Graditi, A. Merola, M. Valenti
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引用次数: 1

摘要

多电平变换器将是未来电网中最重要的变换器之一。这些技术可以促进柔性DER在电网中的集成,在微电网中也得到了重要的作用。由于设计过程中涉及许多不同的变量,设计高性能转换器不是一项微不足道的任务。本文提出了一种新颖的设计方法和易于使用的可执行程序,采用图形用户界面,专门用于多电平转换器的设计。该软件工具旨在获得在效率、平均故障间隔时间和价格方面的多层次权衡解决方案。该工具的核心是基于使用进化遗传算法的多准则优化技术,与精确的电路模型(即电热可靠常规- TER和多电平转换器价格常规)相匹配。解决方案绘制在二维和三维图形中,可以轻松地为特定环境选择最佳解决方案,并将相应的物料清单(BOM)可视化。该软件还允许考虑采用碳化硅和氮化镓类型的新型开关器件的创新转换器系统。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A novel multi-objective design tool for multilevel converters by an electro-thermal evolutionary approach
Multilevel converters will be one of the most important conversion systems in future power networks. These technologies can facilitate the integration of flexible DER in the grid also getting a significant role in microgrids. Designing high performances converters is not a trivial task due to the numerous different variables involved in the design process. This paper proposes a novel design approach and an easy-to-use executable program, employing a graphical user interface, dedicated to the design of multilevel converters. This software tool aims to obtain multilevel trade-off solutions in terms of efficiency, Mean Time Between Failure and price. The core of this tool consists in a multi-criterion optimization technique, based on the use of an evolutionary genetic algorithm, matched to accurate circuital models (i.e. electro-thermal reliable routine - TER and multilevel converter price routine). The solutions, plotted in two-dimensional and three-dimensional graphics, allow to easily choose the optimal solution for the specific context and visualize the corresponding bill of materials (BOM). The software also permits to consider innovative converter systems employing novel switching devices as the silicon carbide and the gallium nitride types.
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