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Analysis of LC-LC2 Compensated Inductive Power Transfer for High Efficiency and Load Independent Voltage Gain

机译:LC-LC2补偿电感电力传输的高效率和负载无关电压增益分析

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摘要

A novel LC-LC2 compensated resonant converter topology with high efficiency and good controllable voltage gain is presented in this paper. An additional receiving side inductor working together with the receiving coil has the contribution to work with a large range of air gap distance. Due to this property, proposed compensation technique is effective for IPT based EV charging application. Voltage gain with independent of load and input impedance having ZPA of the proposed resonant converter are observed by the frequency domain analysis. On the other hand, time domain analysis gives the circuit operation. A 500 W LC-LC2 compensated resonant converter prototype is built to testify the theoretical analysis. To observe the efficiency-comparison, an S-SP compensated resonant converter with a similar amount of output power under different air gap is also presented. In order to justify the effectiveness, the proposed compensation method is verified by the laboratory results. The highest efficiency of the proposed compensated resonant converter is 93% with output power of 500 W at 140-mm air gap between the two sides of the IPT (inductive power transfer) transformer.
机译:本文介绍了具有高效率和良好可控电压增益的新型LC-LC2补偿谐振转换器拓扑。与接收线圈一起工作的附加接收侧电感器具有与大范围的气隙距离一起使用的贡献。由于此属性,所提出的补偿技术对IPT基于EV充电应用有效。通过频域分析观察到具有与所提出的谐振转换器的ZPA的负载和输入阻抗的电压增益。另一方面,时域分析给出了电路操作。建立了500 W LC-LC2补偿谐振转换器原型,以证明理论分析。为了观察效率 - 比较,还呈现了在不同气隙下具有类似的输出功率的S-SP补偿谐振转换器。为了证明有效性,通过实验室结果验证了所提出的补偿方法。所提出的补偿谐振转换器的最高效率为93%,输出功率为500W,在IPT(电感动力传输)变压器的两侧之间的140mm气隙。

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