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Automated tool for 3D planar magnetic temperature modelling: application to EE and E/PLT core-based components

机译:用于3D平面磁温度建模的自动化工具:应用于基于EE和E / PLT磁芯的组件

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摘要

Thermal performance of power converters is a key issue for the power integration. Temperatures inside the active and passive devices can be determined using thermal models. Modelling the temperature distribution of high-frequency magnetic components is quite complex due to the diversity of their geometries and used materials. This study presents a thermal modelling method based on lumped elements thermal network model, applied to planar magnetic components made of double planar E shaped cores (EE) and planar E core combined with plate one (E/PLT). The 3D model is automatically generated from the component's geometry. The computation enables to obtain 3D temperature distribution inside windings and core of planar transformers or inductors, in steady state or in transient case. This study details the proposed modelling method as well as the automated tool including the problem definition and the solving process. The obtained temperature distributions are compared with finite-element simulation results and measurements on different planar transformers.
机译:功率转换器的热性能是功率集成的关键问题。可以使用热模型确定有源和无源设备内部的温度。由于高频磁性元件的几何形状和所用材料的多样性,因此对它们的温度分布进行建模非常复杂。这项研究提出了一种基于集总元素热网络模型的热建模方法,该方法适用于由双重平面E形铁芯(EE)和平面E铁芯与板甲(E / PLT)组合而成的平面磁性部件。 3D模型是根据零部件的几何形状自动生成的。该计算能够在稳态或瞬态情况下获得平面变压器或电感器的绕组和铁心内部的3D温度分布。这项研究详细介绍了所提出的建模方法以及包括问题定义和解决过程的自动化工具。将获得的温度分布与有限元仿真结果以及在不同平面变压器上的测量结果进行比较。

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