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Performance Evaluation of a Three-Phase Dual Active Bridge DC–DC Converter With Different Transformer Winding Configurations

机译:具有不同变压器绕组配置的三相双有源桥式DC-DC转换器的性能评估

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This paper investigates the impact of three transformer winding configurations, i.e., the Y-Y, the Y-Δ, and the Δ-Δ configuration, on the performance of a three-phase dual active bridge (DAB) dc-dc converter. For each configuration, equations for the phase currents, power flow, and zero-voltage switching (ZVS) boundaries are derived for all possible switching modes of the three-phase DAB. Thereafter, a comparison is made of the stress on the switches, the transformer, and the filter capacitors for the selected winding configurations. The comparison reveals that the Y-Y and Δ-Δ configuration perform equally regarding above aspects, with the only difference of a lower winding current for the Δ-Δ configuration. The Y-Δ configuration shows a constant commutation current for phase-shifts from 0 to 30 degrees. Therefore, this configuration features a wider ZVS region for low output powers. Overall, the Y-Δ configuration performs best for power levels between 50% and 80%, regarding the stress on the switches, the transformer, and the filter capacitors. The theoretical analysis is supported with measurements obtained from a high-power experimental setup.
机译:本文研究了三种变压器绕组配置(即Y-Y,Y-Δ和Δ-Δ配置)对三相双有源桥(DAB)DC-DC转换器性能的影响。对于每种配置,针对三相DAB的所有可能的开关模式,得出相电流,功率流和零电压开关(ZVS)边界的方程式。此后,针对所选绕组配置,比较开关,变压器和滤波电容器上的应力。比较表明,就上述方面而言,Y-Y和Δ-Δ配置具有相同的性能,而对于Δ-Δ配置,较低的绕组电流仅有不同。 Y-Δ配置显示了从0到30度相移的恒定换向电流。因此,此配置具有较宽的ZVS区域,可实现低输出功率。总体而言,考虑到开关,变压器和滤波电容器上的应力,Y-Δ配置在50%至80%的功率水平下表现最佳。从高功率实验装置获得的测量结果支持理论分析。

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