使用开关电容变换器单元的三相多电平升压逆变器的实现

A. Barnes, J. Balda
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引用次数: 5

摘要

电力电子转换器的制造商不仅要提高功率和额定电压,还要提高功率密度。无电感变换器有助于实现后者,因为电容储能比电感储能具有更高的能量密度。多电平拓扑,其中包括一些无电感拓扑,通过允许器件之间的电压共享,使转换器能够在更高的电压水平下工作。本文提出了一种新型的多电平无电感升压三相逆变器,该逆变器采用开关电容变换器单元串联结构。这使得逆变器在使用低压直流电源(如并网储能系统或电动汽车的电池)供电时,无需额外的升压转换器或输出变压器。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Implementation of a three-phase multilevel boosting inverter using switched-capacitor converter cells
Manufacturers of power electronic converters seek to increase not only power and voltage ratings but also power density. Inductorless converters help achieve the latter because capacitive energy storage has higher energy density than inductive energy storage. Multilevel topologies, which include some inductorless topologies, enable converters to operate at higher voltage levels by allowing voltage sharing between devices. This paper presents a novel multilevel inductorless boosting three-phase inverter that is constructed using a series configuration of switched-capacitor converter cells. This allows for the inverter to be used without an additional boost converter or output transformer when powered from a low-voltage dc source, such as the battery of a grid-connected energy storage system or an electric vehicle.
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