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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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摘要

DC-link voltage and temperature variations are critical issues when designing an electric vehicle (EV) traction system. However, systems are generally reported at fixed voltage and temperature and may not, therefore, be fully specified when considering the variation of these parameters over full vehicle operating extremes. This paper presents an assessment of power-train options based on the Nissan Leaf vehicle, which is taken as a benchmark system providing experimental validation of the study results. The Nissan Leaf traction machine is evaluated and performance assessed by considering dc-link voltage and temperature variations typical of an automotive application, showing that the system lacks performance as battery state of charge decreases. An alternative traction machine design is proposed to satisfy the target performance. The vehicle power-train is then modified with the inclusion of a dc/dc converter between the vehicle battery and dc-link to maintain the traction system dc-link voltage near constant. A supercapacitor system is also considered for improved system voltage management. The trade-offs for the redesigned systems are discussed in terms of electronic and machine packaging, and mitigation of faulted operation at high speeds.
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。但是,系统通常是在固定电压和温度下报告的,因此,当考虑这些参数在整个车辆极端运行情况下的变化时,可能无法完全指定系统。本文介绍了基于Nissan Leaf车辆的动力总成选项评估,该评估被用作提供研究结果实验验证的基准系统。通过考虑汽车应用中典型的直流链路电压和温度变化来评估和评估Nissan Leaf牵引机,这表明该系统在电池充电状态降低时缺乏性能。为了满足目标性能,提出了一种替代性的牵引机设计。然后通过在车辆电池和直流母线之间包含一个DC / DC转换器来修改车辆的动力总成,以保持牵引系统的直流母线电压接近恒定。还考虑使用超级电容器系统来改善系统电压管理。对于重新设计的系统,需要权衡利弊,包括电子和机器包装以及减轻高速故障操作。

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