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Comparison between Phase-Shift Full-Bridge Converters with Noncoupled and Coupled Current-Doubler Rectifier

机译:具有非耦合和耦合电流倍增器整流器的相移全桥转换器的比较

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摘要

This paper presents comparison between phase-shift full-bridge converters with noncoupled and coupled current-doubler rectifier. In high current capability and high step-down voltage conversion, a phase-shift full-bridge converter with a conventional current-doubler rectifier has the common limitations of extremely low duty ratio and high component stresses. To overcome these limitations, a phase-shift full-bridge converter with a noncoupled current-doubler rectifier (NCDR) or a coupled current-doubler rectifier (CCDR) is, respectively, proposed and implemented. In this study, performance analysis and efficiency obtained from a 500 W phase-shift full-bridge converter with two improved current-doubler rectifiers are presented and compared. From their prototypes, experimental results have verified that the phase-shift full-bridge converter with NCDR has optimal duty ratio, lower component stresses, and output current ripple. In component count and efficiency comparison, CCDR has fewer components and higher efficiency at full load condition. For small size and high efficiency requirements, CCDR is relatively suitable for high step-down voltage and high efficiency applications.
机译:本文介绍了具有非耦合和耦合电流倍增整流器的相移全桥转换器之间的比较。在高电流能力和高降压电压转换方面,具有常规倍流整流器的相移全桥转换器具有以下共同的局限性:极低的占空比和高组件应力。为了克服这些限制,分别提出并实现了具有非耦合电流倍增整流器(NCDR)或耦合电流倍增整流器(CCDR)的相移全桥转换器。在这项研究中,提出并比较了具有两个改进的倍流整流器的500 W相移全桥转换器的性能分析和效率。从他们的原型中,实验结果证明,具有NCDR的相移全桥转换器具有最佳占空比,较低的组件应力和输出电流纹波。在组件数量和效率比较中,CCDR在满载条件下具有更少的组件和更高的效率。对于小尺寸和高效率要求,CCDR相对适合于高降压电压和高效率应用。

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