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Inductive resonant power transfer and topology consideration

机译:感应谐振功率传输和拓扑注意事项

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This paper aims to study the performance of all basic inductive resonant wireless power transfer (WPT) topologies for power transfer efficiency, using the effect of circuit topology in affecting the coefficient of coupling. In the study, all the four basic inductive resonant wireless power transfer topologies are analyzed and simulated. The simple T-equivalent circuit is used to represent the system and MATLAB® are used as the backbone in the analysis. The analysis shows that the parallel-to-series and parallel-to-parallel topology configurations give the best power transfer efficiency. The results show that parallel to series and parallel to parallel average power transfer efficiency referring to coefficient coupling (k) are 81% and 80% respectively, compared to the series-to-parallel and series-to-series which are almost 70% accordingly. The study provides evidence of further system analysis for parallel to series and parallel-to-parallel WPT topologies. The results of the analysis would prove useful in furthering insight into its application such wireless battery charging of electric vehicles.
机译:本文旨在利用电路拓扑在影响耦合系数中的作用,研究所有基本电感谐振无线功率传输(WPT)拓扑对于功率传输效率的性能。在研究中,对四种基本的感应谐振无线电力传输拓扑进行了分析和仿真。简单的T等效电路用于表示系统,MATLAB®用作分析的主干。分析表明,并行串联和并行并联拓扑配置可提供最佳的功率传输效率。结果表明,参考系数耦合(k)的并联与并联和并联平均功率传输效率分别为81%和80%,而串联-并联和串联-串联的功率转换效率分别接近70% 。该研究提供了进一步的系统分析证据,以用于并行,并行和并行到并行的WPT拓扑。分析的结果将有助于进一步了解其应用,例如电动汽车的无线电池充电。

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