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Impact of SiC Devices on Hybrid Electric and Plug-In Hybrid Electric Vehicles

机译:SiC器件对混合动力和插电式混合动力汽车的影响

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摘要

The application of silicon carbide (SiC) devices as battery interface, motor controller, etc., in a hybrid electric vehicle (HEV) will be beneficial due to their high-temperature capability, high-power density, and high efficiency. Moreover, the light weight and small volume will affect the whole powertrain system in a HEV and, thus, the performance and cost. In this paper, the performance of HEVs is analyzed using the vehicle simulation software Powertrain System Analysis Toolkit (PSAT). Power loss models of a SiC inverter based on the test results of latest SiC devices are incorporated into PSAT powertrain models in order to study the impact of SiC devices on HEVs from a system standpoint and give a direct correlation between the inverter efficiency and weight and the vehicle's fuel economy. Two types of HEVs are considered. One is the 2004 Toyota Prius HEV, and the other is a plug-in HEV (PHEV), whose powertrain architecture is the same as that of the 2004 Toyota Prius HEV. The vehicle-level benefits from the introduction of SiC devices are demonstrated by simulations. Not only the power loss in the motor controller but also those in other components in the vehicle powertrain are reduced. As a result, the system efficiency is improved, and vehicles that incorporate SiC power electronics are predicted to consume less energy and have lower emissions and improved system compactness with a simplified thermal management system. For the PHEV, the benefits are even more distinct; in particular, the size of the battery bank can be reduced for optimum design.
机译:由于碳化硅(SiC)器件具有高温能力,高功率密度和高效率,因此在混合动力电动汽车(HEV)中作为电池接口,电机控制器等应用将是有益的。此外,重量轻和体积小将影响混合动力汽车中的整个动力总成系统,从而影响性能和成本。在本文中,使用车辆仿真软件Powertrain System Analysis Toolkit(PSAT)分析了混合动力汽车的性能。基于最新SiC器件测试结果的SiC逆变器功率损耗模型被整合到PSAT动力总成模型中,以便从系统角度研究SiC器件对HEV的影响,并给出逆变器效率和重量与功率之间的直接关系。车辆的燃油经济性。考虑了两种类型的混合动力汽车。一个是2004 Toyota Prius HEV,另一个是插入式HEV(PHEV),其动力总成架构与2004 Toyota Prius HEV相同。通过仿真证明了SiC器件的引入在车辆层面上带来的好处。不仅减少了电动机控制器中的功率损耗,而且减少了车辆动力总成中其他组件的功率损耗。结果,提高了系统效率,并且结合了SiC电力电子设备的车辆预计将消耗更少的能量,具有更低的排放量,并通过简化的热管理系统提高系统的紧凑性。对于插电式混合动力汽车而言,好处更加明显。特别地,可以减小电池组的尺寸以实现最佳设计。

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