Differentiating coupling factor and VA transfer of IPT systems using bipolar pad primaries

F. Lin, G. Covic, J. Boys
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引用次数: 4

Abstract

Coupling factor is a important design parameter in inductive power transfer (IPT) systems as it determines the amount of VA effort required from the primary pad to deliver the necessary VA to the secondary pad. As IPT systems involve more complex magnetic systems such as multi-coil primary pads (whose currents can have an amplitude and phase difference), the effective coupling factor becomes more difficult to describe and validate. Typically, an equivalent T-model is used for two coupled single coil pads; however, this is insufficient for multi-coil primaries such as a bi-polar pad (BPP). As such, this paper introduces an equation which is able to describe the effective coupling factor of an IPT system with a multi-coil primary and a single coil secondary while considering the reflected impedances between the coils.
采用双极垫基的IPT系统的耦合系数和VA传递
耦合系数是感应功率传输(IPT)系统中一个重要的设计参数,因为它决定了从主焊盘向次级焊盘输送必要的电压所需的电压努力量。由于IPT系统涉及更复杂的磁系统,如多线圈初级焊盘(其电流可能具有振幅和相位差),有效耦合因子变得更加难以描述和验证。通常,等效t模型用于两个耦合的单线圈焊盘;然而,这是不够的多线圈初级,如双极垫(BPP)。因此,本文引入了一个方程,该方程能够描述多线圈一次和单线圈二次耦合系统在考虑线圈间反射阻抗的情况下的有效耦合系数。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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