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Integration of Leakage Inductance in Tape Wound Core Transformers for Dual Active Bridge Converters

机译:双有源桥式转换器的带绕芯变压器中的漏感集成

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Dual Active Bridge (DAB) converters are nowadays used in applications such as automotive and general energy storage interfaces, where efficient and compact isolated bidirectional DC/DC converters are required. The heart of this converter is a transformer which, in some designs, may include the required inductance to shape the current and control the energy transfer. This paper shows that for these designs, tape wound cores, usually made of amorphous or nanocrystalline materials, are not the best core option due to leakage flux which is orthogonal to the lamination layers. This flux increases losses in these types of cores. Solutions are proposed to overcome this significant drawback. Analysis developed in this paper is validated by experimental results, which show that core losses due to orthogonal flux in a tape wound core transformer can be reduced more than 6 times if an adapted leakage layer is used instead of a regular one.
机译:如今,双有源桥(DAB)转换器用于汽车和通用储能接口等需要高效紧凑的双向双向DC / DC转换器的应用中。该转换器的核心是一个变压器,在某些设计中,该变压器可能包含所需的电感以整形电流并控制能量传输。本文表明,对于这些设计,通常由无定形或纳米晶体材料制成的卷带式磁芯并不是最佳的磁芯选择,因为它的漏磁通与层压层正交。该通量增加了这些类型的铁芯的损耗。提出解决方案以克服该重大缺陷。通过实验结果验证了本文开发的分析结果,该结果表明,如果使用合适的泄漏层代替常规的泄漏层,则绕带式磁芯变压器中的正交磁通所导致的铁损可以减少6倍以上。

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