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A Hybrid Solenoid Coupler for Wireless Charging Applications

机译:用于无线充电应用的混合电磁耦合器

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This paper introduces a primary pad for wireless charging applications, which is able to transfer high power over large air gaps and is tolerant to lateral displacements suitable for electric vehicle charging applications. The developed pad is an improved solenoid designed specifically to address issues such as flux leakage and loss while retaining good coupling. It is a hybrid structure that consists of a combination of rectangular- or square-shaped coils and a central solenoid, all connected in series. When energized, it produces a single-sided, polarized flux similar to the flux pattern of the solenoid and double D (DDP) pads. The power transfer capability of this pad is investigated through finite-element analysis simulations. The results are compared first to a similar sized solenoid from which it was derived, and also a DDP primary pad and are verified through measurements on prototype systems in the laboratory. The aim of this paper is to provide an improved hybrid solenoid pad showing higher coupling factors and lower stray field emissions with a performance (coupling and stray field emissions) similar to that of DDPs.
机译:本文介绍了一种用于无线充电应用的主垫,其能够在大型空气间隙上传输高功率,并且耐受适用于电动车辆充电应用的横向位移。发达焊盘是一种改进的螺线管,专门设计用于解决诸如焊剂泄漏和损耗等问题而保持良好的耦合。它是一种混合结构,包括矩形或方形线圈的组合和中央螺线管,全部串联连接。通电时,它产生类似于电磁阀和双D(DDP)焊盘的磁通图案的单面偏振通量。通过有限元分析模拟研究该垫的功率传输能力。将结果与其衍生的类似尺寸螺线管进行比较,并且还通过测量实验室中的原型系统进行验证。本文的目的是提供一种改进的混合螺线管垫,其显示出更高的耦合因子和较低的杂散场发射,其性能(耦合和杂散场发射)类似于DDPS的性能(耦合和杂散场发射)。

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