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Efficiency Enhancement for Dynamic Wireless Power Transfer System With Segmented Transmitter Array

机译:具有分段发射机阵列的动态无线功率传输系统的效率增强

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Achieving high efficiency with improved power transfer distance and misalignment tolerance is the major design challenge in realizing dynamic wireless power transfer (D-WPT) systems. This paper provides an analysis on designing D-WPT systems. Design parameters such as number of Tx coils, separation between Tx, operating frequency, and load characteristics are analyzed with respect to efficiency for the D-WPT system with segmented transmitter array. A double-spiral repeater (DSR) is proposed for improving efficiency, enhancing transfer distance, and misalignment tolerance. Experimental results of the proposed topology with DSRs show efficiencies of 81% and 60% at normalized transfer distances (normalized to geometric mean of Tx and Rx sizes) of 0.74 and 2.2, respectively. The proposed topology can be effectively used to alleviate efficiency deterioration against transfer distance and misalignment in D-WPT systems.
机译:在改善动态无线电力传输(D-WPT)系统的同时,实现高效率,改进的动力传输距离和未对准公差是主要的设计挑战。本文提供了有关设计D-WPT系统的分析。针对具有分段发射器阵列的D-WPT系统的效率,分析了诸如Tx线圈数量,Tx之间的间隔,工作频率和负载特性之类的设计参数。提出了一种双螺旋中继器(DSR),用于提高效率,增强传输距离和不对准公差。带有DSR的拟议拓扑的实验结果表明,在归一化传输距离(归一化为Tx和Rx大小的几何平均值)为0.74和2.2的情况下,效率分别为81%和60%。所提出的拓扑结构可有效地用于缓解D-WPT系统中针对传输距离和未对准的效率下降。

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