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Non-linear capacitor based variable capacitor for self-tuning resonant converter in wireless power transfer

机译:无线动力传输中自调谐谐振转换器的非线性电容基电容器

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In wireless power transfer (WPT) system, the resonant frequency of primary side and secondary side should be matched to maximize the power transferred and efficiency. However, in mass production, the variation of each component in the resonant circuit results in poor matching. One solution is to utilize a variable capacitor for self-tuning to compensate the variation. To implement a variable capacitor on a linear capacitor in power converters, most of the solutions chop part of the rated current by an auxiliary circuit. Therefore, the power rating of the auxiliary circuit is proportional to the percentage of capacitance variation, which generates considerable loss. On the other hand, non-linear capacitor, ceramic capacitor as an example, can change capacitance by varying DC bias. The auxiliary circuit to hold the DC bias only needs to supply the leakage current of the nonlinear capacitor, which is negligible. In this paper, an almost lossless auxiliary circuit for continuously varying DC bias is proposed. It is suitable for high power applications such as electric vehicles wireless charger. Experimental results based on a 100-W scale-down series resonant converter (SRC) with 20-cm air gap between the primary and secondary side are presented to illustrate the mechanism of this method.
机译:在无线电力传输(WPT)系统中,初级侧和次级侧的谐振频率应匹配,以最大化电力传输和效率。然而,在批量生产中,谐振电路中每个组分的变化导致匹配不良。一种解决方案是利用可变电容器来自调谐以补偿变化。为了在电源转换器中的线性电容上实现可变电容,大部分解决方案通过辅助电路切断额定电流的一部分。因此,辅助电路的功率额定值与电容变化的百分比成比例,从而产生相当大的损耗。另一方面,非线性电容器,陶瓷电容器作为示例,可以通过改变DC偏压来改变电容。保持直流偏置的辅助电路仅需要提供非线性电容器的漏电流,这可以忽略不计。在本文中,提出了一种用于连续变化的直流偏压的几乎无损的辅助电路。它适用于电动车辆无线充电器等高功率应用。提出了基于100-W刻度序列谐振转换器(SRC)的实验结果,其中初级和次级侧与次级侧和次级侧的20cm气隙差距以说明该方法的机理。

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