3L-NPC三相逆变器功率损耗分析不同PWM调制技术的比较

J. S. Artal-Sevil, J. Lujano-Rojas, C. Bernal-Ruíz, I. S. Gorrachategui
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引用次数: 8

摘要

本文介绍了三相NPC(中性点箝位变换器)三电平变换器的基本工作原理,以及学术文献中常用的不同调制策略和控制技术。目的是根据所使用的调制技术(SPWM, SVM, THIPWM或DPWM),对半导体器件中的传导和开关损耗进行比较。目的是以图形和视觉方式分析对功率损耗影响最大的参数,并确定一套使设备上的这些损耗最小化的技术。本文讨论了其主要应用领域,并提出了一些相关的技术问题。根据半导体(硅、碳化硅)的制造工艺对其进行了加热。该分析是使用富士电气的免费仿真工具Loss simulation Software开发的。该应用程序利用器件的特定特性来提高损耗计算的准确性。这样做的目的是让学生能够更快地吸收课堂上呈现的概念。与构成3L-NPC拓扑的半导体相关的功率损耗已经进行了比较。这样就更容易确定和观察不同参数如开关频率、调制指数、输出电流、功率因数、栅极电阻等对所提出结构的影响。同时用户可以学习使用IGBT应用中的损耗仿真软件
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Analysis of Power Losses in a Three-Phase Inverter 3L-NPC. Comparison with different PWM Modulation Techniques
This paper presents the basic operation of a three-phase NPC (Neutral-Point Clamped Converter) three-level converter, together with the different modulation strategies and control techniques most used in the academic literature. The objective was to develop a comparison between the conduction and switching losses in semiconductor devices depending on the modulation technique (SPWM, SVM, THIPWM or DPWM) used. The purpose is to analyze graphically and visually the most influential parameters on power losses, as well as to determine the set of techniques that minimize these losses on the devices. This document discusses the main fields of application and presents some associated technological problems. The heating on semiconductors according to their manufacturing technology (Si, SiC) has also been presented. The analysis has been developed using the free simulation tool Loss Simulation Software by Fuji-Electric. The application uses the specific characteristics of the devices in order to improve the accuracy in the calculation of losses. The purpose is that students can assimilate more quickly the concepts presented in the classroom. The power losses associated with the semiconductors that constitute the 3L-NPC topology have been compared. In this way it is easier to determine and observe the influence of different parameters such as switching frequency, modulation index, output current, power factor, gate resistance, etc. about the proposed structure. At the same time users can learn to use the IGBT application Losses Simulation software
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