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A Parameter Selection Method for Multi-Element Resonant Converters with a Resonant Zero Point

机译:具有零谐振点的多元件谐振变换器的参数选择方法

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摘要

This paper proposes a parameter design method for multi-element resonant converters (MERCs) with a unique resonant zero point (RZP). This method is mainly composed of four steps. These steps include program filtration, loss comparison, 3D figure fine-tuning and priority compromise. It features easy implementation, effectiveness and universal applicability for almost all of the existing RZP-MERCs. Meanwhile, other design methods are always exclusive for a specific topology. In addition, a novel dual-CTL converter is also proposed here. It belongs to the RZP-MERC family and is designed in detail to explain the process of parameter selection. The performance of the proposed method is verified experimentally on a 500W prototype. The obtained results indicate that with the selected parameters, an extensive dc voltage gain is obtained. It also possesses over-current protection and minimal switching loss. The designed converter achieves high efficiencies among wide load ranges, and the peak efficiency reaches 96.9%.
机译:本文提出了一种具有独特谐振零点(RZP)的多元件谐振转换器(MERC)的参数设计方法。该方法主要由四个步骤组成。这些步骤包括程序过滤,损失比较,3D图形微调和优先级折衷。它具有几乎所有现有RZP-MERC易于实施,有效性和普遍适用性的特点。同时,其他设计方法始终是特定拓扑所独有的。另外,这里还提出了一种新颖的双CTL转换器。它属于RZP-MERC系列,并经过详细设计以解释参数选择的过程。该方法的性能已在500W原型上进行了实验验证。所获得的结果表明,利用所选参数,可获得广泛的直流电压增益。它还具有过流保护和最小的开关损耗。设计的转换器在宽负载范围内实现了高效率,峰值效率达到96.9%。

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