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A Robust Voltage Control Method for Universal EV Battery Charger LLC Resonant Converters

机译:通用EV电池充电器LLC谐振转换器的稳健电压控制方法

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In this study, a novel control method for LLC resonant converter with wide output voltage range and constant switching frequency is proposed targeting wide range of Electric Vehicle (EV) battery charger standards. In conventional LLC converter control topologies, in order to reach lower output voltage levels, switching frequency happens to move away from the resonance frequency, increasing in most of the cases. However, the switching losses due to switching devices start to become the main bottleneck at high switching frequency operation. Furthermore, high switching frequency operation may cause irreversible inrush current damage at the input terminals during the start-up with corresponding overshoot at the output voltage as well, risking the clients on this particular supply. The work presented in this paper proposes a robust and reliable control solution for these particular resonant converter drawbacks. Theoretical analysis for both conventional and proposed control methods are presented in detail. In order to show the effectiveness of the proposed technique, performance metrics of the both are compared experimentally on an LLC resonant converter specification having an output voltage range of 150-500 V with a maximum output power of 7.5 kW.
机译:在这项研究中,针对宽范围的电动汽车(EV)电池充电器标准,提出了一种具有宽输出电压范围和恒定开关频率的LLC谐振变换器控制方法。在传统的LLC转换器控制拓扑中,为了达到较低的输出电压电平,开关频率恰好偏离谐振频率,在大多数情况下会增加。但是,由于开关器件引起的开关损耗开始成为高开关频率操作时的主要瓶颈。此外,高开关频率操作可能会在启动期间在输入端子上造成不可逆的浪涌电流损坏,并在输出电压上产生相应的过冲,从而给使用该特定电源的客户带来风险。本文提出的工作针对这些特殊的谐振转换器缺点提出了一种鲁棒且可靠的控制解决方案。详细介绍了常规控制方法和建议控制方法的理论分析。为了显示所提出技术的有效性,在输出电压范围为150-500 V,最大输出功率为7.5 kW的LLC谐振转换器规格上,对两者的性能指标进行了实验比较。

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