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A current-tripler-rectifier PWM ZVS three-phase full-bridge DC/DC converter with Y-amp;#x0394; connected transformer

机译:电流 - 三倍整流器PWM ZVS三相全桥DC / DC转换器,Y - Δ连接的变压器

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In order to decrease the current stress of switches in high power condition, a current-tripler-rectifier ZVS three-phase full-bridge DC/DC converter based on PWM control strategy is proposed in this paper. Three-phase full-bridge structure in primary side and current-tripler rectifier in secondary side are applied. The converter is preferred to be applied in high power, high input voltage, large-output-current condition. As three-phase interleaved structure is adopted, not only current stress of switches decreases, but also the frequency of input and output current ripple increases to three times of switching frequency leading to smaller filter. Based on PWM, all switches achieve ZVS. It's quite easy to achieve ZVS for lower switches of the bridge leg since the energy comes from output filter inductor. While the energy of upper switches achieving ZVS comes from leaking inductors of two phase transformers, it's easier to achieve ZVS compared with lagging leg switches of phase-shifted full-bridge converter. A prototype with the input 360V & output 48V/42A is built and the results are given based on the experiments.
机译:为了降低在高功率状态下开关的电流应力,电流 - 三倍频整流ZVS三相全桥基于PWM控制策略的DC / DC转换器在本文提出。在初级侧和次级侧的电流 - 三倍频整流器三相全桥结构被应用。该转换器是优选的高功率,高输入电压,大电流输出条件被应用。三相交错结构被采用,不仅电流开关的应力减小,而且输入和输出电流纹波增加至开关频率导致较小的过滤器三次的频率。基于PWM,所有开关实现ZVS。这是很容易实现ZVS的桥臂的下桥臂开关,因为能量来源于输出滤波电感。尽管上开关实现ZVS的能量来自泄漏两个相变压器的电感器,它更容易实现ZVS与滞后桥臂开关相比,移相全桥变换器。与输入360V&输出48V / 42A的原型是建立,结果是基于实验给定。

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