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首页> 外文期刊>IEEE Transactions on Industrial Electronics >High-efficiency Voltage-clamped DC-DC converter with reduced reverse-recovery current and switch-Voltage stress
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High-efficiency Voltage-clamped DC-DC converter with reduced reverse-recovery current and switch-Voltage stress

机译:高效的电压钳位DC-DC转换器,具有降低的反向恢复电流和开关电压应力

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摘要

This paper investigates a high-efficiency clamped-voltage dc-dc converter with reduced reverse-recovery current and switch-voltage stress. In the circuit topology, it is designed by way of the combination of inductor and transformer to increase the corresponding voltage gain. Moreover, one additional inductor provides the reverse-current path of the transformer to enhance the utility rate of magnetic core. In addition, the voltage-clamped technology is used to reduce the switch-voltage stress so that it can select the Schottky diode in the output terminal for alleviating the reverse-recovery current and decreasing the switching and conduction losses. Furthermore, the closed-loop control methodology is utilized in the proposed scheme to overcome the voltage-drift problem of power source under the variation of loads. Thus, the proposed converter topology has a favorable voltage-clamped effect and superior conversion efficiency. Some experimental results via an example of a proton-exchange-membrane fuel cell (PEMFC) power source with a 250-W nominal rating are given to demonstrate the effectiveness of the proposed power-conversion strategy.
机译:本文研究了一种具有降低的反向恢复电流和开关电压应力的高效钳位电压DC-DC转换器。在电路拓扑中,通过电感器和变压器的组合来设计,以增加相应的电压增益。此外,一个附加的电感器提供了变压器的反向电流路径,以提高磁芯的利用率。此外,采用电压钳位技术来降低开关电压应力,以便它可以在输出端子中选择肖特基二极管,以减轻反向恢复电流并降低开关和传导损耗。此外,在所提出的方案中使用闭环控制方法来克服在负载变化的情况下电源的电压漂移问题。因此,提出的转换器拓扑具有良好的电压钳位效果和出色的转换效率。通过一个具有250W标称额定值的质子交换膜燃料电池(PEMFC)电源的示例给出了一些实验结果,以证明所提出的电源转换策略的有效性。

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