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A High-Density, High-Efficiency, Isolated On-Board Vehicle Battery Charger Utilizing Silicon Carbide Power Devices

机译:利用碳化硅功率器件的高密度,高效率,隔离式车载汽车电池充电器

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This paper presents an isolated on-board vehicular battery charger that utilizes silicon carbide (SiC) power devices to achieve high density and high efficiency for application in electric vehicles (EVs) and plug-in hybrid EVs (PHEVs). The proposed level 2 charger has a two-stage architecture where the first stage is a bridgeless boost ac–dc converter and the second stage is a phase-shifted full-bridge isolated dc–dc converter. The operation of both topologies is presented and the specific advantages gained through the use of SiC power devices are discussed. The design of power stage components, the packaging of the multichip power module, and the system-level packaging is presented with a primary focus on system density and a secondary focus on system efficiency. In this work, a hardware prototype is developed and a peak system efficiency of 95% is measured while operating both power stages with a switching frequency of 200 kHz. A maximum output power of 6.1 kW results in a volumetric power density of 5.0 kW/L and a gravimetric power density of 3.8 kW/kg when considering the volume and mass of the system including a case.
机译:本文提出了一种隔离式车载电池充电器,该充电器利用碳化硅(SiC)功率器件来实现高密度和高效率,可应用于电动汽车(EV)和插电式混合动力EV(PHEV)。提议的2级充电器具有两级架构,其中第一级是无桥升压型AC-DC转换器,第二级是相移全桥隔离式DC-DC转换器。介绍了两种拓扑的操作,并讨论了通过使用SiC功率器件获得的特定优势。功率级组件的设计,多芯片功率模块的封装以及系统级封装的介绍主要集中在系统密度上,次要集中在系统效率上。在这项工作中,开发了一个硬件原型,在以200 kHz的开关频率操作两个功率级时,测得的峰值系统效率为95%。考虑到包括外壳在内的系统的体积和质量,最大输出功率为6.1 kW,体积功率密度为5.0 kW / L,重量功率密度为3.8 kW / kg。

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