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首页> 外文期刊>Emerging and Selected Topics in Power Electronics, IEEE Journal of >Optimized Electric Vehicle Wireless Chargers With Reduced Output Voltage Sensitivity to Misalignment
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Optimized Electric Vehicle Wireless Chargers With Reduced Output Voltage Sensitivity to Misalignment

机译:优化的电动车辆无线充电器,输出电压敏感性降低到未对准

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摘要

In this article, an optimized design of wireless charger for electric vehicle (EV) applications is presented to reduce the misalignment effect on the output voltage and efficiency of the wireless charger system. The existing methods to regulate the output voltage require either the communication link between the EV and charging station to control the charging station converter or a dc-dc converter on the EV. This article provides a solution to optimize compensation networks to reduce output voltage sensitivity with respect to misalignment and improve the efficiency of the overall system. Four topologies are studied in details, and the optimized compensation network is developed for each topology. The compensation networks are also designed to satisfy zero voltage switching (ZVS) for a wide range of misalignments. The performance of the optimized circuits is compared in detail in terms of efficiency, output voltage performance, size of the resonant network, and power loss distribution. This article also shows that LCC-LCC and LCC-series are the best candidates for operation in a wide range of misalignments. A 500-W/85-kHz prototype charger is built for each topology, and the performance of the optimized resonant networks is evaluated experimentally.
机译:在本文中,提出了一种用于电动车辆(EV)应用的无线充电器的优化设计,以降低对无线充电器系统的输出电压和效率的不对准影响。调节输出电压的现有方法需要EV和充电站之间的通信链路,以控制EV上的充电站转换器或DC-DC转换器。本文提供了一种解决方案来优化补偿网络,以降低相对于未对准的输出电压灵敏度,提高整个系统的效率。详细研究了四个拓扑,为每个拓扑开发了优化的补偿网络。补偿网络还被设计用于满足零电压切换(ZVS),以实现各种未对准。在效率,输出电压性能,谐振网络的尺寸和功率损耗分布方面,优化电路的性能进行了详细的比较。本文还表明,LCC-LCC和LCC系列是在广泛的未对准中运行的最佳候选者。为每个拓扑结构构建了500 W / 85-kHz的原型充电器,通过实验评估优化的谐振网络的性能。

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