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Extending the Inductor Operating Frequency for Optimally-coupled Wireless Power Transfer Systems

机译:扩展电感器运行频率,以获得最佳耦合的无线电力传输系统

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This paper presents a technique for extending the operating frequency of an inductive link used for wireless power transfer. The extension is achieved by segmenting the primary inductor. A circuit model is proposed for a single-coil squared inductor, which provides the basis for the model of the segmented inductor. These models help to understand the operation of the segmented inductor and serve as a guide to its design. A prototype of the link was fabricated, in which the primary inductor has an average diameter of 22mm and four segments. The secondary inductor has an average diameter of 4 mm and the two inductors are expected to be optimally coupled at the distance of 15 mm. The operating frequency was experimentally validated to be 980MHz which is higher than the 415MHz measured for a conventional inductive link of same dimensions, while the link efficiency is maintained at the same value of 30%.
机译:本文介绍了一种用于扩展用于无线电力传输的电感链路的工作频率的技术。通过分割主要电感来实现扩展。提出了一种电路模型,用于单线圈平方电感器,其为分段电感器的模型提供基础。这些模型有助于了解分段电感的操作,并用作其设计的指南。制造了连杆的原型,其中初级电感器的平均直径为22mm和四个段。次级电感器的平均直径为4mm,并且预计两个电感器将在15mm的距离处最佳地耦合。经常验证的工作频率为980MHz,高于相同尺寸的传统电感链路测量的415MHz,而连杆效率保持在相同的30%。

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