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首页> 外文期刊>Trends in Ecology & Evolution >Modeling of a Magnetic Coupler Based on Single- and Double-Layered Rectangular Planar Coils With In-Plane Misalignment for Wireless Power Transfer
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Modeling of a Magnetic Coupler Based on Single- and Double-Layered Rectangular Planar Coils With In-Plane Misalignment for Wireless Power Transfer

机译:基于单层和双层矩形平面线圈的磁耦合器建模,具有用于无线电力传输的面内未对准

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This article proposes an analytical model that provides accurate self-inductance and mutual inductance calculations for two mutually coupled rectangular, planar, and spiral coils with an air core, which are equal and parallel, including the possibility of a lateral misalignment. Both single- and double-layered coil geometries were modeled by considering an arbitrary number of turns with a circular cross section per layer. The model equations, which can be readily implemented in software, are the results of a systematic approach that starts from the equations for the self-inductance of a wire and the mutual inductance of two parallel and misaligned wires that lie on the same plane. Accuracy is guaranteed by considering all the magnetic interactions among the individual turns in the two coils, while the simplifications involve only the calculations made at the corners of the coils. The model was validated by taking as reference experimental measurements carried out on a rectangular and a square magnetic coupler. A second analytical model, based on equivalent single-turn coils, was also tested for comparison purposes. The validation was extended with finite-element analysis tools by considering a wide range of coil side lengths, air gaps, number of turns, and lateral misalignments. The proposed model can, therefore, be regarded as a reliable tool to aid in the design of rectangular-shaped air-core magnetic couplers with applications in the contactless transfer power that are not necessarily limited to vehicle electrification.
机译:本文提出了一种分析模型,其为两个相互耦合的矩形,平面和螺旋线圈​​提供准确的自电感和互感计算,其具有相等且平行的空气芯,包括横向未对准的可能性。通过考虑每个层的圆形横截面的任意匝数来建模单层和双层线圈几何形状。可以在软件中容易地实现的模型方程是系统方法的结果,其从导线自电感的自电感的方程和两个平行和未对准导线的相互电感开始。通过考虑两个线圈中的各个磁交互来保证精度,而简化仅涉及在线圈的角落中进行的计算。通过在矩形和方形磁耦合器上进行参考实验测量来验证该模型。还测试了基于等效单通线圈的第二分析模型,以进行比较目的。通过考虑各种线圈侧长度,空气间隙,转弯次数和横向未对准,通过有限元分析工具延长了验证。因此,所提出的模型可以被视为可靠的工具,以帮助设计具有不一定限于车辆电气化的非接触式传送电力的矩形空心磁耦合器的可靠工具。

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