开发并验证了在30cm气隙内传输效率为95%、220 W无线电力的模型

Seung-Hwan Lee, R. Lorenz
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引用次数: 64

摘要

虽然在2007年已经演示了60W的无线电力传输,但对于亚米气隙、数百瓦、高效率的无线系统,仍然没有等效的电路模型。该技术的发展需要一个面向设计的电路模型。本文提出了无线系统的等效电路模型,并在此基础上对系统进行了分析。通过有限元分析和实验结果验证了所提模型及其分析的正确性。此外,作为高功率(超过10kW)应用的可行解决方案,下一节将研究无线电力传输系统中的损耗。由于工作频率高(MHz),趋肤效应和接近效应占主导地位。提出了一种新的线圈空间布局,可以显著降低趋肤效应和接近效应造成的损耗。采用有限元法对线圈设计方案进行了评价。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Development and validation of model for 95% efficiency, 220 W wireless power transfer over a 30cm air-gap
Although 60W wireless power transfer was demonstrated in 2007, still there is no equivalent circuit model for a sub-meter air-gap, hundreds of Watts, high efficiency wireless system. A design-oriented circuit model is needed for this technology to evolve. This paper proposes an equivalent circuit model for the wireless system and analyzes the system based on the proposed model. The proposed model and its analysis are validated by means of FEA and experimental results. Furthermore, as a viable solution for high power (over 10kW) applications, losses in the wireless power transfer system are investigated in the following section. Because of the high operating frequency (MHz), skin- and proximity effect were shown to be dominant. New spatial layout of a coil is proposed that significantly reduces losses caused by skin- and proximity effect. Proposed coil design is evaluated by means of FEA.
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