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A Compact Wireless Charger Design with Decoupled Quadruple-D Inductor for LCC-Series Topologies

机译:用于LCC系列拓扑的紧凑型无线充电器设计,具有解耦的四维D电感

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For inductive power transfer (IPT), inductor¬capacitor-capacitor-series (LCC-S) compensation network is one of the most prevalent topologies. In LCC-S IPT, by performing inductor integration, which integrates the input inductor to the primary-side coil, the system can become more compact. Nonetheless, one drawback of inductor integration is that the mutual coupling between the input inductor and the IPT coils can degrade system efficiency and output, especially under misaligned conditions. This paper purposes a decoupled quadruple-D inductor design that achieves inductor integration while has negligible coupling to the IPT coils within the whole operating region. A 1kW LCC-series compensated IPT prototype with the purposed inductor design has been developed, and the experimental results verify that the purposed design has almost identical electrical performance as conventional stand-alone inductors, while requiring no additional space.
机译:对于感应功率传输(IPT),电感器-电容器-电容器系列(LCC-S)补偿网络是最流行的拓扑之一。在LCC-S IPT中,通过执行电感器集成(将输入电感器集成到初级侧线圈),系统可以变得更加紧凑。但是,电感器集成的一个缺点是输入电感器和IPT线圈之间的相互耦合会降低系统效率和输出,特别是在未对准条件下。本文旨在采用一种去耦的四维D电感设计,该设计可实现电感集成,同时在整个工作区域内对IPT线圈的耦合可忽略不计。已经开发出具有目标电感器设计的1kW LCC系列补偿IPT原型,实验结果证明,目标设计具有与常规独立电感器几乎相同的电气性能,同时不需要额外的空间。

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