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首页> 外文期刊>Canatian electrical engineering journal >Wide Bandgap Devices in Electric Vehicle Converters: A Performance Survey
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Wide Bandgap Devices in Electric Vehicle Converters: A Performance Survey

机译:电动汽车转换器中的宽带隙器件:性能调查

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摘要

This paper introduces a unique quantified study about using low-losses fast-switching wide bandgap (WBG) devices, i.e., gallium nitride (GaN) and silicon carbide (SiC), over traditional Silicon (Si) devices in the switching of dc/dc converters, focusing on electric vehicles' (EVs) machine drive and battery charger. A detailed model of the power train of a Nissan Leaf was developed in PSIM software, with WBG semiconductors' capability. The model was simulated one time using GaN semiconductors and another time using SiC devices. Simulation results are quantified and a comparison between different semiconductors in terms of total losses and efficiency is presented. The developed PSIM model can also be extended to other EVs like Chevy Volt. A proof of concept prototype for a Nissan Leaf dc/dc converter was built in the laboratory and results were collected. Componentwise experimental results are presented and their correlation with simulation findings is demonstrated. In addition, experimental results of the overall power train test bench are found to be matched with the simulation results on a system level as well.
机译:本文介绍了一项独特的量化研究,该研究关于在直流/直流切换中使用低损耗快速切换宽带隙(WBG)器件(即氮化镓(GaN)和碳化硅(SiC)),而不是传统的硅(Si)器件)转换器,着重于电动汽车(EV)的机器驱动器和电池充电器。日产Leaf的传动系的详细模型是在PSIM软件中开发的,具有WBG半导体的功能。一次使用GaN半导体模拟模型,另一次使用SiC器件模拟模型。量化了仿真结果,并提出了总损耗和效率方面不同半导体之间的比较。开发的PSIM模型也可以扩展到其他电动汽车,例如Chevy Volt。在实验室中建立了日产Leaf DC / DC转换器的概念验证原型,并收集了结果。提出了组件化的实验结果,并证明了它们与仿真结果的相关性。此外,整个动力总成试验台的实验结果也与系统级的仿真结果相匹配。

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