Modeling, Design, and Experimental Verification of a WPT Level-3 Wireless Charger with Compact Secondary Coupler

O. Onar, V. Galigekere, J. Pries, G. Su, Shenli Zou, Saeed Anwar, Jonathan Wilkins, R. Wiles, L. Seiber, C. White
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引用次数: 4

Abstract

This study introduces a wireless power transfer (WPT) Level-3 rated charger with >11 kW nominal output. The proposed system is interoperable for WPT Level-1, 2, and 3 charger applications of which power levels and airgap separations are defined in SAE J2954. The system designed for this study is capable of operating at Z1 (100-150 mm), Z2 (140-210 mm) and Z3 (170-250 mm) vehicle assembly ground clearance range classes with a very compact vehicle-side (secondary) coupler. The couplers are characterized for the maximum output power (Pout) and the coupling coefficient (k) with different airgaps. System frequency response and the sensitivity analysis are presented. Experimental results are shown for 190.5 mm and 216 mm airgap separations. These results demonstrate that the proposed system with a very compact secondary can be operated at these ground clearance classes with high efficiency at WPT level-3 charging levels.
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具有紧凑型二次耦合器的WPT 3级无线充电器的建模、设计和实验验证
本研究介绍了一种无线功率传输(WPT) 3级额定充电器,额定输出>11千瓦。该系统可用于SAE J2954中定义的功率电平和气隙间距的WPT 1、2和3级充电器应用。为本研究设计的系统能够在Z1(100-150毫米),Z2(140-210毫米)和Z3(170-250毫米)车辆组件离地间隙范围内运行,具有非常紧凑的车辆侧(次级)耦合器。研究了不同气隙下耦合器的最大输出功率(Pout)和耦合系数(k)。给出了系统的频率响应和灵敏度分析。给出了190.5 mm和216 mm气隙分离时的实验结果。这些结果表明,该系统具有非常紧凑的二次系统,可以在这些离地间隙等级下以WPT 3级充电水平的高效率运行。
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