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Computer-Aided Design and Optimization of an Integrated Transformer with Distributed Air Gap and Leakage Path for an LLC Resonant Converter

机译:具有分布式气隙和LLC谐振变换器的分布式气隙和漏电路径的电脑辅助设计和优化

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Integrating all magnetic elements of an LLC resonant converter into the transformer is not yet fully applied in industry products.. This is due to the fact that conventional integrated transformers often suffer from high winding losses caused by the significant proximity effect. This paper addresses this problem by proposing a combination of a distributed air gap and a leakage path within the transformer. A computer-aided design routine is presented in this paper which allows to find a loss-optimal design. The proposed routine is used to design an integrated transformer of 8 kW operated at 300 kHz which was realized as a lab prototype. Compared to a conventional integrated transformer the total losses were reduced by 30%.
机译:将LLC谐振转换器的所有磁性元件集成到变压器中尚未完全应用于工业产品中。这是由于传统的集成变压器经常遭受由显着的接近效果引起的高绕组损失。 本文通过提出变压器内的分布式气隙和泄漏路径的组合来解决该问题。 本文提出了一种计算机辅助设计例程,可以找到损失最佳设计。 所提出的例程用于设计以300 kHz运行的8 kW的集成变压器,该模拟被实现为实验室原型。 与传统的集成变压器相比,总损失减少了30%。

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