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Stepwise Design Methodology and Heterogeneous Integration Routine of Air-Cooled SiC Inverter for Electric Vehicle

机译:电动汽车风冷SiC逆变器的逐步设计方法和异构集成例程

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Carrying on SiC devices, the air-cooled inverter of the electric vehicle (EV) can eliminate the traditional complicated liquid-cooling system in order to obtain a light and compact performance of the powertrain, which is considered as the trend of next-generation EV. However, the air-cooled SiC inverter lacks strategic design methodology and heterogeneous integration routine for critical components. In this article, a stepwise design methodology is proposed for the air-cooled SiC inverter in the power module, dc-link capacitor, and heat sink levels. In the power module level, an electrical-thermal-mechanical multiphysics model is proposed. The multidimension stress distribution principles in a six-in-one SiC power module are demonstrated. An improved power module is presented and confirmed by using the observed multiphysics design principles. In the dc-link capacitor level, ripple modeling of the inverter and capacitor are created. Considering the tradeoffs among ripple voltage, ripple current, and cost, optimal strategies to determine the material and minimize the capacitance of the dc-link capacitor are proposed. In the heat sink level, thermal resistance of air-cooled heat sink is modeled. Structure and material properties of the heat sink are optimally designed by using a comprehensive electro-thermal analysis. Based on the optimal design results, the prototypes of the customized SiC power module and heterogeneously integrated air-cooled inverter are fabricated. Experimental results are presented to demonstrate the feasibility of the designed and manufactured air-cooled SiC inverter.
机译:电动汽车(EV)的空冷逆变器搭载SiC器件,可以消除传统复杂的液体冷却系统,从而获得轻巧紧凑的动力总成性能,这被认为是下一代EV的趋势。但是,风冷SiC逆变器缺乏关键部件的战略设计方法和异构集成程序。在本文中,针对电源模块中的空冷SiC逆变器,直流母线电容器和散热器级提出了逐步设计方法。在功率模块层面,提出了电热机械力学的多物理场模型。说明了六合一SiC功率模块中的多维应力分布原理。通过观察到的多物理场设计原理,提出并确认了一种改进的电源模块。在直流环节电容器级别,将创建逆变器和电容器的纹波模型。考虑到纹波电压,纹波电流和成本之间的折衷,提出了确定材料并最小化直流母线电容器电容的最佳策略。在散热器级别,对风冷散热器的热阻进行建模。通过使用全面的电热分析,可以对散热器的结构和材料特性进行优化设计。根据最佳设计结果,制造了定制SiC功率模块和异质集成风冷逆变器的原型。实验结果表明了设计和制造的空冷SiC逆变器的可行性。

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