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首页> 外文期刊>Electrical Systems in Transportation, IET >Optimal design of line level control resonant converters in plug-in hybrid electric vehicle battery chargers
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Optimal design of line level control resonant converters in plug-in hybrid electric vehicle battery chargers

机译:插电式混合动力电动汽车电池充电器中线路电平控制谐振转换器的优化设计

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摘要

The series??parallel resonant converter (also called line level control (LLC) resonant converter) is one of the most suitable topologies for dc??dc power supply. This study introduces the LLC resonant converter into the on-board battery chargers for the plug-in hybrid electric vehicle (PHEV) applications. Different from the previous literature which has focused on the wide operation range and hold-up time requirement in the LLC design, this study is mainly focused on battery load characteristics and its impact on the charger design. First, to guarantee high efficiency in the light-load condition in the constant voltage charging stage, the optimum LLC switching frequency range is derived. Second, considering the constant current charging function in the battery charger, the impact of peak load current on the LLC converter is discussed. The boundary between zero-voltage switching (ZVS) and zero-current switching (ZCS) in the constant current charging application is analysed. The trade-off among the minimum load voltage, maximum charge current and resonant capacitor is studied in detail. Finally, the optimal design method for the LLC resonant converter used in the PHEV battery charger is proposed. The proposed methods are validated through experiments on a 400 V/6 kW PHEV charger system with 97% efficiency.
机译:串联并联谐振转换器(也称为线路电平控制(LLC)谐振转换器)是最适合用于dcdc直流电源的拓扑之一。这项研究将LLC谐振转换器引入了插电式混合动力汽车(PHEV)应用的车载电池充电器中。与先前的文献关注LLC设计中的宽工作范围和保持时间要求不同,本研究主要关注电池负载特性及其对充电器设计的影响。首先,为了确保在恒压充电阶段的轻载条件下具有较高的效率,得出了最佳的LLC开关频率范围。其次,考虑电池充电器中的恒定电流充电功能,讨论了峰值负载电流对LLC转换器的影响。分析了恒流充电应用中零电压开关(ZVS)和零电流开关(ZCS)之间的边界。详细研究了最小负载电压,最大充电电流和谐振电容器之间的权衡。最后,提出了用于PHEV电池充电器的LLC谐振转换器的最佳设计方法。通过在效率为97%的400 V / 6 kW PHEV充电器系统上进行的实验验证了所提出的方法。

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