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System impact of silicon carbide power electronics on hybrid electric vehicle applications.

机译:碳化硅功率电子对混合动力电动汽车应用的系统影响。

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The emergence of silicon carbide- (SiC-) based power semiconductor switches with their superior features compared with silicon (Si) based switches has resulted in substantial improvements in the performance of power electronics converter systems. These systems with SiC power devices are more compact, lighter, and more efficient, so they are ideal for high-voltage power electronics applications including hybrid electric vehicle (HEV) power converters.; In this dissertation, first, a power supply converter and a traction drive converter of an HEV are selected and then, the impact of SiC-based power devices on these converters is investigated. Reductions in heatsink size and device losses with the increase in the efficiency are analyzed using an averaging model of a three-phase PWM inverter in the traction drive. In addition to these, the reductions in the filter and transformer size for the power supply are also included. For more accurate results, experimental data and/or device physics are taken into consideration to model power diodes and MOSFETs.; Finally, suggestions of parameter modification to design better performing application specific power devices are made after a parametric study of the devices.
机译:与基于硅(Si)的开关相比,基于碳化硅(SiC-)的功率半导体开关具有更优越的性能,这导致了功率电子转换器系统性能的显着提高。这些带有SiC功率器件的系统更加紧凑,轻巧和高效,因此非常适合包括混合电动汽车(HEV)功率转换器在内的高压功率电子应用。本文首先选择了混合动力汽车的电源转换器和牵引驱动转换器,然后研究了SiC基功率器件对这些转换器的影响。使用牵引驱动器中的三相PWM逆变器的平均模型来分析散热器尺寸的减小和设备效率的降低,以及效率的提高。除此之外,还包括减小电源滤波器和变压器的尺寸。为了获得更准确的结果,需要考虑实验数据和/或器件物理特性来对功率二极管和MOSFET进行建模。最后,在对设备进行参数研究之后,提出了修改参数的建议,以设计性能更好的专用功率设备。

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