一种新型整流结构的无循环移相全桥变换器

Jung-Kyu Han, G. Moon
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引用次数: 5

摘要

传统的移相全桥(PSFB)变换器具有全桥结构和所有开关器件均可实现软开关等优点,适合大功率应用。但当占空比小时,其一次侧循环电流大,导致一次开关导通损耗大。此外,由于整流二极管在寄生元件之间有电压环,因此具有较大的电压应力。为了克服上述问题,本文提出了一种利用耦合输出电感消除循环电流和电压环的新型PSFB变换器。结果表明,该变换器降低了一次侧的导通损耗,并且可以在二次整流器中使用小额定电压二极管。为了验证其效果和可行性,在320 ~ 400v的输入电压和56V/12.8A的输出规格下对样机进行了实验。
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Circulating Current-less Phase-Shifted Full-Bridge Converter With New Rectifier Structure
A conventional phase-shifted full bridge (PSFB) converter has several advantages for high power applications since it has full-bridge structure and all switching devices can achieve soft switching. However, it has large circulating current in primary side when it operates with small duty-ratio resulting in large conduction loss at primary switches. Also, since rectifier diodes have a voltage ringing between parasitic components, it has large voltage stress. To overcome above problems, a new PSFB converter which eliminates the circulating current and voltage ringing using coupled output inductor is proposed in this paper. As a result, the proposed converter reduces a conduction loss at primary side and can use small voltage rating diode in secondary rectifier. To verify the effect and feasibility, prototype converters are experimented with a 320-400V input voltage and 56V/12.8A output specification.
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