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Design of a High-Efficiency Wireless Power Transfer System With Intermediate Coils for the On-Board Chargers of Electric Vehicles

机译:电动汽车车载充电器中间线圈高效无线电力传输系统设计

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摘要

In this paper, a high efficiency inductive wireless power transfer system for the on-board chargers of electric vehicles is proposed. In order to improve the power transfer efficiency, the proposed system adopts two additional intermediate coils with resonant capacitors, which increases the effective magnetizing impedance between the transmitter and receiver coils with no ferrites. The resonant tank of the proposed system is designed to operate the converter as a current source and as a voltage source at two different frequencies to implement the constant current (CC) mode charge and constant voltage (CV) charge, respectively. Since the proposed converter operates at a fixed frequency in each mode of charge operation, full soft switching of all the switching devices is possible and the zero phase angle condition can be achieved in both the CC and CV mode operations. A theoretical analysis based on a Thevenin model to come up with a suitable design for the battery charger and its closed-loop controller is presented and its superior performance is demonstrated by experimental results. A 6.6 kW prototype is implemented with a 200 mm air gap to demonstrate the validity of the proposed method. Experimental results show that the dc to dc conversion efficiency of the proposed system is 97.08% at 3.7 kW of output power in the CV mode charge.
机译:本文提出了一种用于电动汽车的车载充电器的高效感应式无线电力传输系统。为了提高功率传输效率,提出的系统采用了两个附加的带有谐振电容器的中间线圈,这增加了没有铁氧体的发射器和接收器线圈之间的有效磁化阻抗。提出的系统的谐振电路设计为在两个不同的频率下将转换器用作电流源和电压源,以分别实现恒定电流(CC)模式充电和恒定电压(CV)充电。由于所提出的转换器在每种充电模式下均以固定频率工作,因此所有开关器件都可以完全软切换,并且在CC和CV模式下均可实现零相角条件。提出了基于戴维南模型的理论分析,为电池充电器及其闭环控制器提供了合适的设计,并通过实验结果证明了其优越的性能。一个6.6 kW的原型具有200毫米的气隙,以证明所提出方法的有效性。实验结果表明,在CV模式充电下,在3.7 kW的输出功率下,拟议系统的dc至dc转换效率为97.08%。

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