电动汽车牵引逆变系统液冷散热器分析与建模

Paulo H. A. S. e Silva, Eduardo Cabral da Silva, L. R. Rocha, P. R. Eckert, R. Vieira
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引用次数: 2

摘要

高性能逆变器是电气应用中的关键部件。逆变器的运行能力、效率和寿命周期可能会受到损耗大小和外部因素(如环境温度和湿度)的限制。液冷散热器可以降低系统的温度水平,提高系统的整体效率。提出了一种基于液冷散热器的电动汽车三相逆变器的分析与建模方法。对一种碳化硅器件进行了逆变器开关和导通损耗的研究。通过福斯特热网络对散热器进行建模和评估。在ANSYS软件中采用有限元方法对散热器进行了仿真。对不同流量条件下散热器系统温度的计算结果进行了评价。在Typhoon Hill软件中使用商用SiC器件参数进行了动态分析。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Analysis and Modeling of a Liquid Cooled Heat Sink for EV Traction Inverter Systems
High performance inverters are key components in electric applications. The capacity of operation, efficiency and life cycle of inverters can be limited for magnitude of losses and external factors as ambient temperature and humidity. The liquid cooling heat sink can reduces the level of temperature of system and increases the overall eficiency of system. This paper presents an analysis and modeling of a three-phase inverter for electric vehicle applications with liquid cooled heat sink. The study of inverter switching and conduction losses is carried out for a Silicon Carbide devices. The modeling of the heat sink is developed and evaluated through Foster thermal network. The heat sink is simulated in the ANSYS software by using finite element approach. The results of heat sink system temperature are evaluated with different flow rate conditions. The dynamic analysis is performed in Typhoon Hill software with commercial SiC device parameters.
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