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Magnetic link optimization for wireless power transfer applications: Modeling and experimental validation for resonant tubular coils

机译:无线功率传输应用中的磁链优化:谐振管状线圈的建模和实验验证

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This paper presents an analytical model of a copper-tube-based resonator coil used for wireless power transfer (WPT) applications. Some well-known techniques for calculating skin-effect-caused resistance, mutual inductance, self-inductance and self-capacitance are discussed in terms of their applicability for resonator modeling. Additionally, a new approach for proximity effect modeling is proposed, that results in a computationally efficient expression for proximity factor. Finally, all these elements are combined to derive a simple optimization function. In order to verify the derivations, the analytical outcomes are compared to FEM and experimental results for a planar spirally-wound, six-turn tubular coil.
机译:本文介绍了用于无线电力传输(WPT)应用的基于铜管的谐振器线圈的分析模型。根据其在谐振器建模中的适用性,讨论了一些计算趋肤效应引起的电阻,互感,自感和自电容的众所周知的技术。此外,提出了一种新的邻近效应建模方法,该方法可得出邻近因子的计算有效表达式。最后,将所有这些元素组合在一起以得出简单的优化函数。为了验证推导,将分析结果与平面螺旋缠绕六匝管状线圈的有限元分析和实验结果进行了比较。

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