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A novel high power density dual-buck inverter with coupled filter inductors

机译:具有耦合滤波电感的新型高功率密度双降压逆变器

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The Dual Buck Inverter (DBI) does not need dead time and has no shoot-through concerns and the free-wheeling diodes can be chosen independently with fast reverse recovery features to minimize switching loss, it has great advantages in reliability and efficiency. However, since the current of filter inductors is half cycle sinusoidal wave, the utilization rate of magnetic is low. In order to overcome the shortcomings, a novel high power density dual-buck inverter with coupled filter inductors (HPDDBI) is proposed in the paper. In the proposed HPDDBIs, a inductor, works in full line cycle, is separated from the primary inductors and served as a dominant filter inductor (DFT); the two remaining DC filter inductors, work in half line cycle, are coupled together. The proposed HPDDBIs effectively decrease the volume and weight of the inverter. Furthermore, the circulating current issue in the conventional Dual Buck topology with coupled inductors can be solved. The operating principles of the proposed HPDDBIs are analyzed in detail. The design guidelines of the filter are given out. Finally, experimental results verify the theoretical analysis.
机译:双降压型逆变器(DBI)不需要死区时间,也不需要直通问题,并且可以通过快速反向恢复功能独立选择续流二极管,以最大程度地降低开关损耗,在可靠性和效率方面都具有很大优势。但是,由于滤波电感器的电流为半周期正弦波,因此磁性的利用率较低。为了克服这些缺点,本文提出了一种新型的具有耦合滤波电感的高功率密度双降压逆变器(HPDDBI)。在建议的HPDDBI中,一个电感器以全线周期工作,与初级电感器分离,并用作主导滤波电感器(DFT)。其余两个以半线周期工作的直流滤波电感耦合在一起。所提出的HPDDBI有效地减小了逆变器的体积和重量。此外,可以解决具有耦合电感器的传统双降压拓扑中的循环电流问题。拟议的HPDDBI的工作原理将得到详细分析。给出了过滤器的设计准则。最后,实验结果验证了理论分析。

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