基于SiC电源模块和电容电压平衡的电动汽车牵引用1.2 kV 100kw四电平ANPC逆变器

Jun Wang, I. Laird, Xibo Yuan, Wenzhi Zhou
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引用次数: 3

摘要

随着碳化硅(SiC)功率器件和多电平变换器拓扑结构的最新进展,它们的结合可以进一步推动电动汽车(EV)牵引逆变器的性能极限,同时适应更高的电压系统。针对下一代电动汽车动力系统的1.2 kV直流链路,本文提出了由四电平有源中性点箝位(4L-ANPC)拓扑和全sic功率模块组成的100 kW/1.2 kV三相逆变器的设计和实现。该转换器原型是同类产品中的第一个(1.2 kV+SiC+4L-ANPC),由商用半桥SiC功率模块实现,并通过基于冗余电平调制的最新电压平衡技术实现。转换器的概念在1 kV/8 kW的小型钻机上进行了验证。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A 1.2 kV 100 kW Four-level ANPC Inverter with SiC Power Modules and Capacitor Voltage Balance for EV Traction Applications
With the recent advances of Silicon Carbide (SiC) power devices and multilevel converter topologies, a combination of them can further push the performance boundaries of electric vehicle (EV) traction inverters while adapting to higher-voltage systems. Prospectively targeting a 1.2 kV dc-link for the next-generation EV powertrain, this paper presents the design and implementation of a 100 kW/1.2 kV three-phase inverter formed by a four-level active neutral point clamped (4L-ANPC) topology and full-SiC power modules. The built converter prototype is the first of its kind (1.2 kV+SiC+4L-ANPC), which is implemented by the commercial half-bridge SiC power modules and enabled by the latest voltage balancing technique based on redundant level modulation. The concept of the converter is validated with a built prototype in a 1 kV/8 kW downscaled rig.
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