A Novel Half-Full-Bridge Split-Capacitor DC-DC Converter Based On Dual-Active-Bridge Topology

Amir Aghajani, Navid Zare Kashani, M. Eldoromi, A. A. Moti Birjandi
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引用次数: 1

Abstract

In this paper, a novel half-full-bridge DC-DC converter based on the split-capacitor dual-active-bridge (DAB) converter is proposed. In the proposed topology, the primary and the secondary sides of the transformer windings are connected to the midpoint of the input and the output split capacitors, respectively. Therefore, the switching voltage stress in the proposed converter is half of the conventional DAB converter. In addition, two power switches are omitted in the proposed converter compared to the conventional DAB converter, which consequently reduces the switching loss, increases the total efficiency, and makes the converter more affordable. Also, the proposed converter can easily connect to the multi-level inverter (MLI) for grid-connected applications, without adding the extra capacitors. To ensure the zero-voltage-switching (ZVS) for all the power switches at full load range under the single-phase-shift (SPS) modulation, the optimization method of the magnetizing inductor current is employed. Furthermore, the comparison is made between the proposed topology, conventional DAB converter, and the split-capacitor DAB (SCDAB) topology. The simulation results using MATLAB/Simulink verifies the performance of the proposed topology and the mentioned advantages.
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一种基于双有源桥拓扑的半全桥分容DC-DC变换器
本文提出了一种基于分路电容双有源电桥(DAB)变换器的半全桥DC-DC变换器。在所提出的拓扑结构中,变压器绕组的初级和次级侧分别连接到输入和输出分路电容器的中点。因此,该变换器的开关电压应力是传统DAB变换器的一半。此外,与传统的DAB变换器相比,本文提出的变换器省去了两个功率开关,从而降低了开关损耗,提高了总效率,使变换器更加经济实惠。此外,所提出的转换器可以很容易地连接到多级逆变器(MLI)并网应用,而无需添加额外的电容器。为了保证在单相移相(SPS)调制下所有功率开关在全负载范围内的零电压开关(ZVS),采用了磁化电感电流的优化方法。此外,还将所提出的拓扑结构与传统的DAB变换器和分裂电容DAB (SCDAB)拓扑结构进行了比较。利用MATLAB/Simulink进行了仿真,验证了所提拓扑的性能和优点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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