Derivation of operation mode for flying capacitor topology applied to three-level DAB converter

Hayato Higa, J. Itoh
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引用次数: 7

Abstract

This paper discusses a Dual Active Bridge (DAB) DC-DC converter utilizing to three-level flying capacitor topology for a battery conversion system. With applying to a multi-level topology, the voltage stress is reduced in all switches. In addition, the low order harmonic components are reduced due to five-level waveform. In a two-level DAB converter, the efficiency becomes low when the input voltage is not closed to the nominal voltage. In order to improve the efficiency at the input voltage fluctuation, this paper also proposes the operation mode of the three-level DAB converter at the input voltage fluctuation. The output voltage waveform of the inverter is determined by the relationship among the efficiency of the two modes which are so called the full-bridge mode and the half-bridge mode. In this paper, the changing point between the half-bridge and the full-bridge mode is derived using the loss calculation. In the simulation, the ZVS range and the inductor current are compared with the two-level and the three-level inverter. It is confirmed that the ZVS range is extended by 60%. In addition, the fundamental operation of the proposed DAB converter is confirmed by the experimental results.
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三电平DAB变换器中飞行电容拓扑工作模式的推导
本文讨论了一种基于三电平飞行电容拓扑结构的双有源桥(DAB) DC-DC变换器。由于应用于多级拓扑结构,所有开关中的电压应力都减小了。此外,由于采用五电平波形,降低了低次谐波分量。在双电平DAB变换器中,当输入电压不接近标称电压时,效率会降低。为了提高输入电压波动时的效率,本文还提出了三电平DAB变换器在输入电压波动时的工作方式。逆变器的输出电压波形由两种模式(即全桥模式和半桥模式)的效率关系决定。本文通过损耗计算,推导出了半桥模式和全桥模式之间的变化点。在仿真中,比较了两电平和三电平逆变器的ZVS范围和电感电流。经证实,ZVS射程延长了60%。此外,实验结果证实了所提出的DAB变换器的基本工作原理。
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