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Control method of impedance network in SiC power converters for HEV/EV

机译:HEV / EV用siC功率变换器中阻抗网络的控制方法

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摘要

Silicon carbide (SiC) devices provide significant performance improvements in many aspects, including lower \udpower dissipation, higher operating temperatures, and faster switching, compared to conventional Si devices. All these \udfeatures helped increase the interest in the applications of these devices for electric drive systems. The inclusion of an impedance network to elevate DC voltage would improve performance of an electric-traction system, because the topologies of impedances networks can eliminate the need of a DC-DC converter. However, it is important to know control methods that applicable to this type of topologies to systems that are more efficient. This paper presents the analysis of a control method in a power converter topology using SiC devices with an impedance network to elevate DC voltage for electric traction applications. The proposed analisys includes the implementation of a control method in Current Fed Quasi-Z topology, with 100 kHz switching frequency, and its analysis using the simulation of the control method, the power losses in SiC devices and the stress on passive components in the impedance network. Finally, the obtained results are compared with a conventional Current Fed Quasi-Z topology built with silicon devices at a low switching frequency (2 KHz).
机译:与传统的Si器件相比,碳化硅(SiC)器件在许多方面都提供了显着的性能改进,包括更低的功耗,更高的工作温度和更快的开关速度。所有这些功能有助于增加人们对这些设备在电驱动系统中的应用的兴趣。包含阻抗网络以提高DC电压将改善电牵引系统的性能,因为阻抗网络的拓扑结构可以消除对DC-DC转换器的需求。但是,重要的是要知道适用于这种拓扑的控制方法对于效率更高的系统。本文介绍了使用具有阻抗网络的SiC器件来提升电力牵引应用的直流电压的功率变换器拓扑中的控制方法的分析。拟议的analisys包括在电流馈入准Z拓扑中以100 kHz开关频率实现控制方法,并使用该控制方法的仿真,SiC器件的功率损耗以及阻抗中无源元件的应力对其进行分析。网络。最后,将获得的结果与采用低开关频率(2 KHz)的硅器件构建的传统电流馈电准Z拓扑进行比较。

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