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High-Frequency Power Transformers With Foil Windings: Maximum Interleaving and Optimal Design

机译:带箔绕组的高频功率变压器:最佳交织和最佳设计

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Foil conductors and primary and secondary interleaving are normally used to minimize winding losses in high-frequency (HF) transformers used for high-current power applications. However, winding interleaving complicates the transformer assembly, since taps are required to connect the winding sections, and also complicates the transformer design, since it introduces a new tradeoff between minimizing losses and reducing the construction difficulty. This paper presents a novel interleaving technique, named , that makes it possible to minimize the winding losses as well as the construction difficulty. An analytical design methodology is also proposed in order to obtain free-cooled transformers with a high efficiency, low volume, and, therefore, a high power density. For the purpose of evaluating the advantages of the proposed technique, the methodology is applied to design a transformer positioned in the 5 kW–50 kHz intermediate HF resonant stage of a commercial PV inverter. The proposed design achieves a transformer power density of 28 W/cm with an efficiency of 99.8%. Finally, a prototype of the maximum-interleaved transformer is assembled and validated satisfactorily through experimental tests.
机译:在用于大电流电源应用的高频(HF)变压器中,通常使用箔导体以及一次和二次交织来最小化绕组损耗。然而,绕组交织使变压器组件复杂化,因为需要抽头来连接绕组部分,并且还使变压器设计复杂化,因为这在最小化损耗和降低构造难度之间引入了新的权衡。本文提出了一种新颖的交错技术,名为,可以最大程度地减少绕组损耗和施工难度。还提出了一种分析设计方法,以便获得具有高效率,小体积并因此具有高功率密度的自冷变压器。为了评估所提出技术的优势,该方法被用于设计位于商用PV逆变器的5 kW–50 kHz中间HF谐振级的变压器。提出的设计实现了28W / cm的变压器功率密度,效率为99.8%。最后,通过实验测试组装并交错验证了最大交错​​变压器的原型。

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