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A novel electro-thermal simulation approach to inverter power modules for electric vehicle

机译:电动汽车变频电源模块的新型电热仿真方法

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This paper presents a fast method for predicting inverter performance and evaluating power devices in electric vehicle drives during longtime driving cycles. The reliability of insulated gate bipolar transistors (IGBTs) is directly influenced by temperature and temperature variation cycles. Based on ANSYS SIMPLORER, a novel method of decoupling the device and inverter simulation is proposed to maintain high accuracy of power losses and device temperatures, and to achieve faster than real time inverter simulation. An illustration is given for a battery electric vehicle for SFTP-SC03 driving cycle. Device models are built for silicon IGBTs and PIN diodes. The simulation framework offers the potential to rapidly improve the inverter design process, and to evaluate device selection quickly.
机译:本文介绍了一种快速方法,用于预测长时间驾驶循环期间电动车辆驱动器中的逆变器性能和评估功率器件。 绝缘栅双极晶体管(IGBT)的可靠性直接受温度和温度变化循环的影响。 基于ANSYS Simplorer,提出了一种解耦器件和逆变器仿真的新方法,以保持功率损耗和器件温度的高精度,并达到比实时逆变器仿真更快。 给出了用于SFTP-SC03驾驶循环的电池电动车的图示。 设备型号为硅IGBT和引脚二极管。 仿真框架提供了快速改善逆变器设计过程的潜力,并快速评估设备选择。

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