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Comparison of IGBT and SiC Inverter Loss for 400V and 800V DC Bus Electric Vehicle Drivetrains

机译:400V和800V直流母线电动汽车传动系统IGBT和SiC逆变器损耗的比较

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Improving inverter selection for electric vehicles is a must when tackling overall vehicle efficiency and reduction of traction system losses. This paper investigates the efficiency benefits achieved by using an 800V dc bus voltage and wideband gap SiC carbide devices rather than a conventional IGBT inverter and a 400V dc bus. Inverters utilizing 600V IGBTs, 1200V IGBTs, 1200V hybrid silicon carbide (SiC) devices, and 1200V full SiC devices are modeled. The modeled loss for each inverter type is incorporated into a full electro-mechanical vehicle model as a way of accurately representing their behavior in an application. Measured data from experimental testing of a 180kW traction machine and a 1200V IGBT inverter were also used in developing and verifying the validity of the inverter model. Simulation results show around a 5% reduction in an electric vehicle’s energy consumption, and consequently a 5% increase in range, when a full SiC inverter is used. All results are normalized to a 600V IGBT inverter, showing that all the 1200V devices are more efficient and that the SiC devices show the most improvement overall.
机译:解决整体车辆效率和减少牵引系统损失时,必须改善电动汽车的逆变器选择。本文研究了使用800V直流总线电压和宽带隙碳化硅器件而不是传统的IGBT逆变器和400V直流总线所带来的效率收益。对利用600V IGBT,1200V IGBT,1200V混合碳化硅(SiC)器件和1200V全SiC器件的逆变器进行了建模。每种逆变器类型的模型化损失都被纳入完整的机电汽车模型中,以此作为一种精确表示其在应用中的行为的方式。 180kW牵引机和1200V IGBT逆变器的实验测试得出的测量数据也用于开发和验证逆变器模型的有效性。仿真结果表明,当使用全SiC逆变器时,电动汽车的能耗降低了5%左右,因此范围增加了5%。所有结果均针对600V IGBT逆变器进行了归一化,表明所有1200V器件的效率更高,而SiC器件总体上显示出最大的改进。

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