使用电解电容器减小尺寸的堆叠开关电容器结构

Irshad, Faran, Rizwan, Mishal, Zaffar, A. Nauman
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引用次数: 1

摘要

直流电容是以直流微电网为主的电力电子系统的核心部件之一。它们对整体规模的贡献很大。在本文中,先前提出的“堆叠开关电容器”(SSC)技术通过使用电解电容器和开关阵列作为大型电解电容器的替代方案进行了改进。新的拓扑结构被命名为“电解SSC”(eSSC),它有效地减小了转换器的尺寸。该技术用较小的电容器和一组开关取代了大型电解电容器,以模拟大型电解电容器的行为。本文分析了所提出的拓扑结构,并考虑了eSSC正常运行的不同设计要求。给出了仿真结果,并对原始SSC的相对体积进行了估计,表明所提出的eSSC确实减少了合理数量的尺寸,并且可以灌注到任何需要电容组的系统中,该系统需要在线频处吸取电流。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Stacked switched capacitor architecture using electrolytic capacitors for size reduction
DC-Link Capacitors are one of the core constituents in many power electronic systems mainly DC-micro grids. They contribute significantly to the overall size. In this paper, a technique “Stacked Switched Capacitor” (SSC) proposed earlier is modified by using an array of electrolytic capacitors and switches as an alternative to a large electrolytic capacitor. The new topology is named “electrolytic SSC” (eSSC) and it effectively reduces the size of the converter. This technique replaces a large electrolytic capacitor with smaller capacitors and an array of switches to mimic the behavior of a large electrolytic capacitor. In this paper, the proposed topology is analyzed and different design requirements are taken into account for the proper functioning of the eSSC. The simulation results are presented and an estimate of the relative volume of the original SSC shows that the proposed eSSC indeed reduces the size by a reasonable amount and it can be inculcated into any system where capacitor bank is required which draws current at line frequency.
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