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Three-Level Resonant Converter With Double Resonant Tanks for High-Input-Voltage Applications

机译:具有双谐振储能的三电平谐振转换器,适用于高输入电压应用

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摘要

A new resonant converter having low voltage stress and nearly constant efficiency against line variation for high- and wide-input-voltage applications is presented in this paper. It is similar to a three-level zero-voltage-switching pulsewidth modulation converter (TL ZVS PWMC) with two flying capacitors. In the proposed converter, however, two flying capacitors are used as the resonant capacitors, and the output voltage regulation is achieved by frequency modulation. The main advantages of the proposed converter are that, since the sum of the voltages of two resonant capacitors is constant and is equal to half of the input voltage, the voltage across each switch clamps to half of the input voltage and keeps the balance. Moreover, all main switches and rectifier diodes are softly switched under full-line and full-load conditions, and high efficiency can be constantly achieved over a wide input voltage range. These advantages solve the drawbacks on TL ZVS PWMCs. The features, operation principles, and relevant analysis results over a wide input voltage range of the proposed converter are presented in this paper. The validity of this study is confirmed by the experimental results of a prototype converter with 400-600-V input, 48-V/10-A output, and 200-kHz resonant frequency. The experimental results show that the maximum efficiency of the proposed converter is 95.08% under a full-load and a 600-V input and slightly varies across the 400-600-V input voltage range.
机译:本文针对高输入电压和宽输入电压应用提出了一种新型谐振转换器,该转换器具有低电压应力和几乎恒定的抗线路变化效率。它类似于带有两个飞跨电容器的三电平零电压开关脉宽调制转换器(TL ZVS PWMC)。然而,在提出的转换器中,两个飞跨电容器用作谐振电容器,并且通过调频来实现输出电压调节。所提出的转换器的主要优点在于,由于两个谐振电容器的电压之和是恒定的,并且等于输入电压的一半,因此每个开关两端的电压钳位到输入电压的一半,并保持平衡。此外,所有主开关和整流二极管在全线和满负载条件下均进行软开关,并且可以在较宽的输入电压范围内不断实现高效率。这些优点解决了TL ZVS PWMC的缺点。本文介绍了该转换器在较宽的输入电压范围内的特性,工作原理以及相关的分析结果。具有400-600V输入,48V / 10A输出和200kHz谐振频率的原型转换器的实验结果证实了这项研究的有效性。实验结果表明,建议的转换器在满载和600V输入下的最大效率为95.08%,并且在400-600V输入电压范围内略有变化。

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