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High-Frequency LLC Resonant Converter With Magnetic Shunt Integrated Planar Transformer

机译:带有磁并联集成平面变压器的高频 LLC 谐振转换器

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Achieving high efficiency and high power density is emerging as a goal in many power electronics applications. LLC resonant converter has been proved as an excellent candidate to achieve this goal. To achieve smaller size of passive components, the resonant inductor in the LLC converter is usually integrated into the transformer by utilizing its leakage inductance. However, the leakage inductance of the transformer is usually insufficient and thus the LLC converter has to be operated in a limited frequency range (this limits the input voltage range accordingly), otherwise the power efficiency will drop dramatically. Therefore, a larger resonant inductance in the LLC converter is expected to operate in a wider input voltage range. This paper proposes a new method to create a larger resonant inductance by using a magnetic shunt integrated into planar windings. The accurate leakage inductance modeling, calculation, and optimal design guideline for LLC planar transformer, including optimal magnetic shunt selection and winding layout, are presented. A 280-380 V input and output 48 V-100 W half-bridge LLC resonant converter with 1 MHz resonant frequency is built to verify the design methodology. A comparison is made between two converters with the same parameters, one using magnetic shunt integrated transformer and the others using traditional planar transformer and external inductor. Experimental result shows the proposed converter with magnetic shunt is capable to achieve comparable high efficiency and regulation capability with the other under a wide input voltage, which verifies the optimal design methodology. Above all, this magnetics integration methodology reduces the whole converter's volume and thus increases the power density.
机译:在许多电力电子应用中,实现高效率和高功率密度已成为目标。 LLC谐振转换器已被证明是实现此目标的极佳选择。为了实现无源元件的更小尺寸,LLC转换器中的谐振电感通常通过利用其漏电感集成到变压器中。但是,变压器的漏感通常不足,因此LLC转换器必须在有限的频率范围内运行(这相应地限制了输入电压范围),否则功率效率将急剧下降。因此,预计LLC转换器中较大的谐振电感将在较宽的输入电压范围内工作。本文提出了一种通过使用集成到平面绕组中的磁分流器产生更大的谐振电感的新方法。提出了LLC平面变压器的准确漏电感建模,计算和最佳设计指南,包括最佳磁路选择和绕组布局。构建了具有1 MHz谐振频率的280-380 V输入和输出48 V-100 W半桥LLC谐振转换器,以验证设计方法。比较了两个参数相同的转换器,一个使用磁并联集成变压器,另一个使用传统的平面变压器和外部电感器。实验结果表明,所提出的带有磁分流器的转换器能够在宽输入电压下实现与其他转换器相当的高效率和调节能力,从而验证了最佳设计方法。最重要的是,这种磁集成方法减少了整个转换器的体积,从而提高了功率密度。

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