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A Three-Phase ZVS PWM DC/DC Converter With Asymmetrical Duty Cycle Associated With a Three-Phase Version of the Hybridge Rectifier

机译:具有非对称占空比的三相ZVS PWM DC / DC转换器与三相整流器

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This paper proposes the use of a three-phase version of the hybridge rectifier in the three-phase zero-voltage switch (ZVS) dc/dc converter with asymmetrical duty cycle. The use of this new rectifier improves the efficiency of the converter because only three diodes are responsible for the conduction losses in the secondary side. The current in the secondary side of the transformer is half the output current. In addition to this, all the advantages of the three-phase dc/dc converter, i.e., the increased frequency of the output and input currents, the improved distribution of the losses, as well as the soft commutation for a wide load range, are preserved. Therefore, the resulting topology is capable of achieving high efficiency and high power density at high power levels. The theoretical analysis, simulation, and experimental results obtained from a 6-kW prototype, and also a comparison of the efficiency of this converter with the full-bridge rectifier are presented.
机译:本文提出在三相非零占空比的零电压开关(ZVS)dc / dc转换器中使用三相混合整流器。使用这种新型整流器可以提高转换器的效率,因为只有三个二极管负责次级侧的传导损耗。变压器次级侧的电流是输出电流的一半。除此之外,三相dc / dc转换器的所有优点,即输出和输入电流的频率增加,损耗的分布得到改善,以及在宽负载范围内的软整流,都得到了体现。保留。因此,所得到的拓扑能够在高功率水平下实现高效率和高功率密度。提出了从6 kW原型获得的理论分析,仿真和实验结果,并比较了该转换器与全桥整流器的效率。

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