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Analysis and optimization of coupled windings in magnetic resonant wireless power transfer systems with orthogonal experiment method

机译:基于正交试验法的磁共振无线电力传输系统耦合绕组的分析与优化

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摘要

The coupled magnetic resonant unit (CMRU) has great effect on the transmitting power capability and efficiency of magnetic resonant wireless power transfer system. The key objective i.e. the efficiency coefficient kQ is introduced in the design of CMRU or the coupled windings based on the mutual inductance model. Then the design method with orthogonal experiments and finite element method simulation is proposed to maximize the kQ due to low precise analytical model of ACresistance and inductance for PCB windings at high- frequency. The method can reduce the design iterations and thereby can get more optimal design results. The experiments verified the design objective of kQ as well as the design method effectively. In the optimal PCB windings prototype at operating frequency of 4 MHz, the kQ and the maximum efficiency are increased by about 12% and 4% respectively.
机译:耦合磁共振单元(CMRU)对磁共振无线电力传输系统的发射功率能力和效率有很大影响。在互感模型的基础上,在CMRU或耦合绕组的设计中引入了关键目标,即效率系数kQ。然后,提出了一种采用正交实验和有限元方法仿真的设计方法,以使由于高频下PCB绕组的交流电阻和电感的精确解析模型精度低而使kQ最大化。该方法可以减少设计迭代,从而可以获得更好的设计结果。实验验证了kQ的设计目标和设计方法的有效性。在工作频率为4 MHz的最佳PCB绕组原型中,kQ和最大效率分别提高了约12%和4%。

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