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Simulation Study and Experimental Verification of a Universal Contactless Battery Charging Platform With Localized Charging Features

机译:具有局部充电功能的通用非接触式电池充电平台的仿真研究与实验验证

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This paper presents a finite-element (FE) simulation study of a planar contactless battery charging platform for portable consumer electronic equipment. Magnetic field plots of the charging platform are generated under no-load and loaded conditions so that the field distribution of the planar charging platform can be visualized. Three working modes of the platform have been investigated and compared, including full excitation and two forms of selective excitation. With new results arising from this FE simulation study and practical experiments, the theory of the magnetomotive force (mmf) generation of the multilayer planar printed-circuit-board winding array structure can be further understood. The results obtained in this paper provide a foundation of understanding for future design and optimization of planar contactless charging platforms. In addition, it has been confirmed that an electromagnetic shield structure that has been applied to coreless planar transformer applications, can work equally well for the planar charging platform.
机译:本文介绍了用于便携式消费电子设备的平面非接触式电池充电平台的有限元(FE)仿真研究。充电平台的磁场图是在空载和负载条件下生成的,因此可以看到平面充电平台的场分布。对平台的三种工作模式进行了研究和比较,包括完全激发和两种形式的选择性激发。通过此有限元仿真研究和实际实验得出的新结果,可以进一步理解多层平面印刷电路板绕组阵列结构的磁通势(mmf)产生理论。本文获得的结果为理解平面非接触式充电平台的未来设计和优化提供了基础。另外,已经证实,已经应用于无芯平面变压器应用的电磁屏蔽结构对于平面充电平台可以同样良好地工作。

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