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Reconfigurable Topology for IPT System Maintaining Stable Transmission Power Over Large Coupling Variation

机译:可重构的IPT系统拓扑,维持稳定的传输功率在大耦合变化上

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摘要

Coupling variations in inductive power transfer (IPT) systems are almost inevitable, which results in unstable transmission power. In order to withstand the coupling variation for an IPT system with stable transmission power, a new approach based on reconfigurable compensation topology is proposed. The basic principle is to create two transfer power-coupling coefficient (P& x2013;k) curves of two compensation topologies. A switch is utilized to alter one topology to the other topology for the IPT system so that the system can operate within the top regions of the P& x2013;k curves of the reconfigurable topology. First, the P& x2013;k curve of the detuned series & x2013;series (SS) topology is elaborated. Then, the reconfigurable topology is proposed based on the equivalent detuned SS topology, and followed by the parameter design method. Finally, a 400-W prototype is built to verify the validity of the proposed approach. With coupling coefficient variation ranging from 0.1 to 0.25, the transmission power fluctuation of the proposed topology is only 5 & x0025; with efficiency climbing from 85.8 & x0025; to 91.7 & x0025;.
机译:感应电力传输(IPT)系统的耦合变化几乎是不可避免的,这导致不稳定的传输功率。为了承受具有稳定传输功率的IPT系统的耦合变化,提出了一种基于可重构补偿拓扑的新方法。基本原理是创建两个转移电源耦合系数(<斜斜体> p &x2013; k /斜体>)两个补偿拓扑曲线。交换机用于改变一个拓扑到IPT系统的另一个拓扑,使得系统可以在<斜斜体> P &x2013的顶部区域内操作; <斜体> k 曲线可重构的拓扑。首先,<斜体> p &x2013; k 旋转系列的曲线和x2013;纹理拓扑系列(ss)拓扑。然后,基于等效的障碍的SS拓扑提出可重新配置的拓扑,然后提出参数设计方法。最后,建立了400-W原型以验证所提出的方法的有效性。随着耦合系数变化范围为0.1至0.25,所提出的拓扑的传输功率波动仅为5&x0025;效率攀登85.8&x0025;到91.7&x0025;

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