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Minimum Volume Design of a Forced-Air Cooled Three-Phase Power Factor Correction Stage for Electric Vehicle Chargers

机译:电动汽车充电器的强制风冷三相功率因数校正级的最小体积设计

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This paper describes a volumetric design study, which evaluates switching loss, thermal management and the physical dimensions of all major passive components, including the electromagnetic interference (EMI) input filter, boost inductors and DC-link capacitors, for a three-phase low-voltage power factor correction (PFC) stage for electric vehicle chargers. The proposed design study considers three popular three-phase pulse width modulated (PWM) active front-end AC-DC topologies: the standard 2-level industry solution, the 3-level neutral point clamped (NPC) converter and the 3-level T-type (T2C) converter. For each topology, the pulsating switched phase-leg voltages are computed for both continuous space vector pulse width modulation (SVPWM) and 60° discontinuous pulse width modulation (DPWM). Based on the switched phase-leg voltages, the impact of the modulation technique and switching frequency on switching loss, heatsink and passive components is thoroughly analyzed. For an accurate estimation of the switching loss, the switching energies of state-of-the-art silicon carbide (SiC) MOSFETs have been measured at corresponding operating points. Results are presented for an 11 kW, 800 V active power factor correction (PFC) application.
机译:本文介绍了一项体积设计研究,该研究评估了三相低电压,低噪声,低噪声的所有主要无源元件的开关损耗,热管理和物理尺寸,包括电磁干扰(EMI)输入滤波器,升压电感器和直流母线电容器。电动汽车充电器的电压功率因数校正(PFC)阶段。拟议的设计研究考虑了三种流行的三相脉宽调制(PWM)有源前端AC-DC拓扑:标准的2级工业解决方案,3级中性点钳位(NPC)转换器和3级T型(T 2 C)转换器。对于每种拓扑,都针对连续空间矢量脉冲宽度调制(SVPWM)和60°非连续脉冲宽度调制(DPWM)来计算脉动开关相脚电压。基于开关相脚电压,彻底分析了调制技术和开关频率对开关损耗,散热器和无源元件的影响。为了准确估算开关损耗,已在相应的工作点测量了最新技术的碳化硅(SiC)MOSFET的开关能量。给出了11 kW,800 V有功功率因数校正(PFC)应用的结果。

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