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A Fast Loss and Temperature Simulation Method for Power Converters, Part II: 3-D Thermal Model of Power Module

机译:电源转换器的快速损耗和温度仿真方法,第二部分:电源模块的3-D热模型

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摘要

This paper describes the development and implementation of an analytical 3-D thermal model for fast and accurate thermal simulation of power device modules in electrothermal converter simulation. A Fourier-based solution is used to solve the 3-D heat equation. The solution can describe the variation of temperature through the whole inverter power module structure as a function of time. The model can simulate thermal interactions resulting from multiple heat sources. The thermal model is extremely fast to simulate compared to finite-element (FEM) approaches. The new model has been implemented in MATLAB/Simulink in order to cosimulate with the converter model which is in the same form. The model has been validated against the computational fluid dynamics (CFD) software package FLOTHERM and shows good agreement. The required aspects of 3-D heat diffusion are captured successfully by the Fourier-based model.
机译:本文介绍了用于在电热转换器仿真中快速而准确地对功率器件模块进行热仿真的解析3-D热模型的开发和实现。基于傅立叶的解决方案用于求解3-D热方程。该解决方案可以描述整个逆变器电源模块结构中温度随时间的变化。该模型可以模拟由多个热源引起的热相互作用。与有限元(FEM)方法相比,热模型的仿真速度非常快。新模型已在MATLAB / Simulink中实现,以便与相同形式的转换器模型进行协同仿真。该模型已针对计算流体动力学(CFD)软件包FLOTHERM进行了验证,并显示出良好的一致性。通过基于傅立叶的模型成功捕获了3-D热扩散的所需方面。

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