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Multimode Constant Power Control Strategy for LCC Resonant Capacitor Charging Power Supply Based on State Plane Analysis

机译:基于状态平面分析的LCC谐振电容器充电电源多模常数功率控制策略

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摘要

A novel constant power charging strategy is proposed for LCC resonant capacitor charging power supply (CCPS) in this article, which combines the advantages of discontinuous current mode (DCM) and continuous current mode (CCM) to increase the charging speed of capacitor and the utilization of input grid capacity. In order to implement the multimode constant power control (CPC) strategy, a steady-state model of LCC series-parallel resonant converter is built by state plane analysis, and the analytical expressions for output voltage, average output current, and switching frequency are derived. By the analytical expressions, this control strategy directly determines the relationship of the output voltage and the switch frequency, so the frequency control curve of the pulse frequency modulation could be realized easily. Accordingly, the converter operating along the control curve can take advantage of high average and low peak current of CCM, small switching loss of DCM. Finally, the accuracy of LCC state plane model and the effectiveness of multimode CPC are verified by the simulation and a 2-kW CCPS experiment.
机译:提出了一种新的恒力充电策略,提出了本文中的LCC谐振电容器充电电源(CCP),其结合了不连续电流模式(DCM)和连续电流模式(CCM)的优点,以提高电容器的充电速度和利用率输入网格容量。为了实现多模常数功率控制(CPC)策略,通过状态平面分析构建LCC系列平行谐振转换器的稳态模型,派生出输出电压,平均输出电流和开关频率的分析表达式。通过分析表达式,该控制策略直接确定输出电压和开关频率的关系,因此可以容易地实现脉冲频率调制的频率控制曲线。因此,沿着控制曲线操作的转换器可以利用CCM的高平均平均值和低峰值电流,DCM的小开关损耗。最后,通过模拟和2 kW CCP实验验证了LCC状态平面模型的准确性和多模CPC的有效性。

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