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An investigation of DC-link voltage and temperature variations on EV traction system design

机译:电动汽车牵引系统设计中直流母线电压和温度变化的研究

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DC-link voltage and temperature variations are critical issues when designing an electric vehicle (EV) traction system. The paper presents an assessment of electric vehicle power-train options based on the Nissan Leaf vehicle, which is taken as a benchmark system providing same validation for the study. The Nissan Leaf traction machine is evaluated and performance assessed by considering DC-link voltage and temperature variations. An alternative traction machine design is proposed to satisfy the specification. The vehicle power-train is then modified with the inclusion of a DC/DC converter between the battery pack and DC-link to maintain the traction system DC-link voltage near constant. Additionally, inclusion of a supercapacitor system presents a much tighter input voltage specification but still doesn't completely eliminate the issue. Finally, installing a DC/DC converter to mitigate the faulted operation of electric machine drive is reported.
机译:在设计电动汽车(EV)牵引系统时,直流母线电压和温度变化是关键问题。本文介绍了基于日产聆风汽车的电动汽车动力总成选项的评估,该评估被作为基准系统,为研究提供了相同的验证。通过考虑直流母线电压和温度变化来评估和评估Nissan Leaf牵引机的性能。提出了一种替代的牵引机设计来满足规格要求。然后通过在电池组和直流母线之间包括一个DC / DC转换器来修改车辆的动力传动系,以保持牵引系统的直流母线电压接近恒定。此外,包含超级电容器系统会提供更严格的输入电压规格,但仍不能完全消除该问题。最后,报告了安装DC / DC转换器以减轻电机驱动器故障的情况。

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