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An Improved LCL-L Compensation Topology for Capacitive Power Transfer in Electric Vehicle Charging

机译:一种改进的LCL-L补偿拓扑,用于电动车辆充电中的电容电力传输

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摘要

This paper proposes an LCL-L compensation circuit for high power capacitive power transfer (CPT) aiming at minimizing number of resonant components and improving system performance. The proposed topology adopts only four external resonant components at both sides of the capacitive coupler. The output power is proportional to the capacitive coupling coefficient, therefore, it simplifies the design procedure and abolishes protection circuit requirements under coupler's misalignment. Moreover, optimizing efficiency at full-load conditions of compensation network can be easily achieved in this system by designing resonant components at the highest value of the mutual capacitance. Theoretical analysis of the proposed system is conducted alongside comparison to lasted CPT compensation circuits. Simulation and experimental results of a 1.5-kW CPT prototype with an air gap distance of 150 mm are provided to verify the feasibility and the effectiveness of the proposed system. System performances under different coupler's misalignment conditions and output power levels are also examined and discussed as well.
机译:本文提出了一种用于高功率电容电力传输(CPT)的LCL-L补偿电路,其目的是最小化谐振元件的数量并提高系统性能。所提出的拓扑仅在电容耦合器的两侧仅采用四个外部谐振组件。输出功率与电容耦合系数成比例,因此,它简化了设计过程,并在耦合器的未对准下取消了保护电路要求。此外,通过在相互电容的最高值下设计谐振部件,可以在该系统中容易地实现补偿网络的满载条件的优化效率。建议系统的理论分析与持久的CPT补偿电路相比,与持久的CPT补偿电路相比进行。提供1.5千瓦CPT原型的仿真和实验结果,提供了150 mm的空气间隙距离,以验证所提出的系统的可行性和有效性。还检查和讨论了不同耦合器的未对准条件和输出功率水平下的系统性能。

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