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Design Methodology For Transformers Including Integrated And Center-tapped Structures For Llc Resonant Converters

机译:变压器的设计方法,包括用于Llc谐振转换器的集成式和中心抽头式结构

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摘要

A design methodology for transformers including integrated and center-tapped structures for LLC resonant converters is proposed. In the LLC resonant converter, the resonant inductor in the primary side can be merged in the transformer as a leakage inductance. And, the absence of the secondary filter inductor creates low voltage stress on the secondary rectifiers and is cost-effective. A center-tapped structure of the transformer secondary side is widely used in commercial applications because of its higher efficiency and lower cost than full-bridge structures in the rectifying stages. However, this transformer structure has problems of resonance unbalance and transformer inefficiency caused by leakage inductance imbalance in the secondary side and the position of the air-gap in the transformer, respectively. In this paper, gain curves and soft-switching conditions are derived by first harmonic approximation (FHA) and operating circuit simulation. In addition, the effects of the transformer including integrated and center-tapped structures are analyzed by new FHA models and simulations to obtain an optimal design. Finally, the effects of the air-gap position are analyzed by an electromagnetic field simulator. The proposed analysis and design are verified by experimental results with a 385W LLC resonant converter.
机译:提出了一种变压器的设计方法,包括用于LLC谐振转换器的集成式和中心抽头式结构。在LLC谐振转换器中,初级侧的谐振电感器可以作为漏电感合并在变压器中。并且,缺少次级滤波电感器会在次级整流器上产生低电压应力,并且具有成本效益。变压器次级侧的中心抽头结构比整流阶段的全桥结构具有更高的效率和更低的成本,因此被广泛用于商业应用。然而,该变压器结构具有分别由次级侧中的漏电感不平衡和变压器中的气隙的位置引起的谐振不平衡和变压器效率低下的问题。本文通过一次谐波近似(FHA)和工作电路仿真得出增益曲线和软开关条件。此外,通过新的FHA模型和仿真分析了包括集成式和中心抽头式结构的变压器的影响,以获得最佳设计。最后,通过电磁场模拟器分析气隙位置的影响。 385W LLC谐振转换器的实验结果验证了所提出的分析和设计。

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