Analysis and Design of Cubic Magnetic Coupler for High Distance-to-Diameter Ratio IPT Systems
Yijie Wang, Peng Gu, Yousu Yao, Dianguo Xu
Harbin Institute of Technology
内容与影响
This article proposes a kind of cubic-magnetic coupler (CMC) for inductive power transfer (IPT) system, which has huge application potential in the charging field of moving targets. The CMC can still maintain sufficient coupling coefficient when used for long-distance wireless power transfer, it also has great capability of misalignment tolerance. Distance-to-diameter ratio (DDR) is defined to eliminate the impact of coil size and make the comparison between different couplers fairer and easier. This article optimizes the parameters and shape of the CMC. Then, the proposed coupler is compared with several existing couplers employed in long-distance IPT systems. Double-sidedLCCcompensation topology is chosen to limit the current flowing through the coupling coils. A CMC with an outer size of 180×180×180 mm3was made, based on which an IPT prototype was built. The superiorities of the proposed coupler were verified by a series of experiments. When the DDR equals 3, the coupling coefficient of the CMC is 0.00985, and the maximum dc–dc and ac–ac efficiencies are 64.9% and 72.8%, respectively.
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工程Wireless Power Transfer Systems
Energy Harvesting in Wireless Networks · Innovative Energy Harvesting Technologies
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