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Design of a zero-voltage-switching large-air-gap wireless charger with low electric stress for electric vehicles

机译:电动汽车零电压开关低气隙无线充电器的设计

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This study proposes a design and development of a wireless power transfer system to charge the battery in electric vehicles. A parallel-parallel topology is adopted to realise 10-15 cm-distance power transfer using the resonance theory. Finite-element method is used to extract the coil parameters. The advantages of the proposed design compared with the previous similar research are (i) low operational frequency (42 kHz) which avoids the electromagnetic interference to the on-board automotive electronics equipment and (ii) low electric stress to the semi-conductor switches through using zero-voltage-switching technique. A 2 kW prototype to charge 200 V battery was built to experimentally verify the theoretical analysis. The overall system efficiency is ~86%.
机译:这项研究提出了一种无线电源传输系统的设计和开发,该系统可以为电动汽车的电池充电。采用并联-并联拓扑结构,利用共振理论实现10-15 cm距离的功率传输。使用有限元方法提取线圈参数。与以前的类似研究相比,所提出的设计的优点是(i)低工作频率(42 kHz),避免了对车载汽车电子设备的电磁干扰,以及(ii)通过开关对半导体开关的低电应力使用零电压开关技术。建立了一个2 kW原型来为200 V电池充电,以通过实验验证理论分析。整体系统效率约为86%。

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