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Thermal Modeling of Inductor and Transformer Windings Including Litz Wire

机译:包括利兹线的电感器和变压器绕组的热模型

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摘要

Design optimization of magnetic components, which considers both electrical and thermal performance, can help in designing power converters with a high power density. This paper proposes an approximate analytical model for thermal resistance of inductor and transformer windings, including litz wire, which only requires knowledge of thermal properties of constituent materials and geometric dimensions. The model is based on regular square and hexagonal packing of insulatedwires and is derived by integration of infinitesimal thermal resistances along a specified heat flow path. The model closely agrees with finite-element analysis (FEA) and can be used in place of time-consuming FEA as part of larger thermal network models for magnetic components. The model is also experimentally validated using a toroidal inductor with a litz-wire winding; the model has less than 12% error compared to the experimental measurement. Application of the model for practical windings, including litz-wire windings, is also discussed. The model can be used during the design process of magnetic components of a switching power converter to evaluate the temperature and potential hot spots. The model provides closed-form results, hence fast computation times, and so can be used in design optimization procedures.
机译:兼顾电气和热性能的磁性元件的设计优化可以帮助设计具有高功率密度的功率转换器。本文提出了电感和变压器绕组(包括绞合线)的热阻的近似分析模型,该模型仅需要了解组成材料的热特性和几何尺寸。该模型基于绝缘电线的规则正方形和六边形堆积,并且是通过沿指定的热流路径整合无穷小的热阻而得出的。该模型与有限元分析(FEA)十分吻合,可以代替耗时的FEA用作大型磁性元件热网络模型的一部分。还使用带有绞合线绕组的环形电感器对该模型进行了实验验证;与实验测量值相比,该模型的误差小于12%。还讨论了该模型在实际绕组(包括绞合线绕组)中的应用。该模型可用于开关电源转换器的磁性组件的设计过程中,以评估温度和潜在热点。该模型提供封闭形式的结果,因此计算时间快,因此可用于设计优化过程。

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