首页> 外文期刊>IEEE Transactions on Power Electronics >A Zero-Voltage and Zero-Current Switching Three-Level DC–DC Converter With Reduced Rectifier Voltage Stress and Soft-Switching-Oriented Optimized Design
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A Zero-Voltage and Zero-Current Switching Three-Level DC–DC Converter With Reduced Rectifier Voltage Stress and Soft-Switching-Oriented Optimized Design

机译:零电压零电流开关三电平DC-DC转换器,具有减小的整流器电压应力和面向软开关的优化设计

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A novel zero-voltage zero-current switching (ZVZCS) three-level converter with pulsewidth modulation (PWM) phase-shift control is proposed. The ZCS of the lagging switch is obtained by using a regenerative passive snubber in the secondary. In order to reduce the voltage stress on the rectifier's diodes, a few passive elements are inserted into the primary: a small inductance, two diodes, and a small additional winding of the main transformer. In each half-cycle, one of these diodes will conduct for a short time in order to clamp the voltage of the snubber's capacitor, and thus, the rectifier stress, at (n2 1)(Vin/2), n1, and n2 being the transformer's primary and, respectively, secondary turns number. The three-level configuration allows for the reduction of the voltage stress across the power switches to half of the input voltage Vin. The conditions for assuring ZVS of the leading switch and ZCS of the lagging switch are found. Design constraints on the parallel capacitances of the switches of the leading switch, on the snubber's holding capacitor, and on the additional inductance and winding are hence established, allowing for an optimized design of the converter parameters. A dc analysis allows for the calculation of the effective duty cycle, which enjoys a boost effect due to the proposed snubber. Thus, a further reduction of the primary current stress and rectifier voltage stress is obtained. All the improvements conclude in a high efficiency. The influence of the choice of the parameters' values on the regulation capability is pointed out. Experiments on a prototype of 4.5kW confirm the results
机译:提出了一种新型的具有脉宽调制(PWM)相移控制的零电压零电流开关(ZVZCS)三电平转换器。滞后开关的ZCS通过在次级中使用再生无源缓冲器来获得。为了降低整流器二极管上的电压应力,在初级线圈中插入了一些无源元件:一个小电感,两个二极管和一个小的主变压器附加绕组。在每个半周期中,这些二极管之一将在短时间内导通,以钳位缓冲电容器的电压,从而将整流器应力钳位在(n2 / n1)(Vin / 2),n1和n2分别是变压器的初级匝数和次级匝数。三级配置可将电源开关两端的电压应力降低到输入电压Vin的一半。找到了确保前导开关的ZVS和滞后开关的ZCS的条件。因此,建立了对前导开关的开关的并联电容,缓冲器的保持电容器以及附加电感和绕组的设计约束,从而可以优化设计转换器参数。直流分析允许计算有效占空比,由于所建议的缓冲器,它具有增强作用。因此,进一步减小了初级电流应力和整流器电压应力。所有的改进都以高效率得出结论。指出了参数值的选择对调节能力的影响。在4.5kW的原型上进行的实验证实了结果

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