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Minimum resonant capacitor design of high-power LLC resonant converter for comprehensive efficiency improvement in battery charging application

机译:大功率LLC谐振转换器的最小谐振电容器设计可在电池充电应用中全面提高效率

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摘要

Here, a minimum resonant capacitor design approach is proposed for the insulated-gate bipolar transistor (IGBT)-based high-power LLC resonant converter to improve its comprehensive efficiency in the electric vehicle (EV) battery charging application. The mathematical model of LLC resonant converter is established by using the first harmonic approximation (FHA) method. Then, the switching losses of IGBT-based high-power LLC resonant converter are analysed. Also, the relationship between predominant turn-off losses and turn-off current of power device IGBT is derived. To improve the comprehensive efficiency, the minimum resonant capacitor is proposed to reduce the turn-off losses, avoiding complex control or auxiliary circuit. Finally, the proposed approach is verified by a 2 kW LLC resonant converter prototype with 690 V DC input voltage and 75–150 V DC output voltage. Experimental results show the comprehensive efficiency of the prototype is up to 93.7%.
机译:在此,针对基于绝缘栅双极晶体管(IGBT)的大功率LLC谐振转换器,提出了一种最小谐振电容器设计方法,以提高其在电动汽车(EV)电池充电应用中的综合效率。通过一次谐波近似(FHA)方法建立了LLC谐振变换器的数学模型。然后,对基于IGBT的大功率LLC谐振变换器的开关损耗进行了分析。此外,推导了主要的关断损耗与功率器件IGBT的关断电流之间的关系。为了提高综合效率,建议使用最小谐振电容器来减少关断损耗,避免复杂的控制或辅助电路。最后,通过2 approachkW LLC谐振转换器原型验证了所提出的方法,该原型具有690 V直流输入电压和75–150 V直流输出电压。实验结果表明,该样机的综合效率高达93.7%。

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