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Two-/three-coil hybrid topology and coil design for WPT system charging electric bicycles

机译:WPT系统充电电动自行车的两线圈/三线圈混合拓扑和线圈设计

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摘要

Wireless power transfer (WPT) for charging electric bicycles (EBs) can save people from tiresome plugging actions and avoid electrical shock hazards, especially in adverse weather. This study proposed a two-/three-coil hybrid topology to achieve constant current (CC) and constant voltage (CV) for charging EBs, simplifying control schemes. The system realises CC output with two-coil topology and operates in CV mode with three-coil topology by turning on a switch. Besides, an inductor array is used to compensate reactive power in CV mode when massive EBs are charged by one high-frequency inverter (HFI). The secondary side of the proposed topology is compact, and the number of components and HFI can be reduced. A coil design process based on double-D-type for the three-coil system is given, with the constraint of mutual inductances among three coils and limited size. To demonstrate the validity of the proposed methods, an experimental setup is built, and the performance of the two-/three-coil hybrid system indicates that the fluctuations of charging current and voltage are <0.64 and 2.12% in the whole charging profile. Moreover, the performance of two WPT chargers connected with one HFI hints that massive EBs can be charged with only one HFI.
机译:用于为电动自行车(EB)充电的无线电力传输(WPT)可以使人们免于烦恼的插拔动作,并避免触电危险,特别是在恶劣天气下。这项研究提出了一种两线圈/三线圈混合拓扑,以实现给EB充电的恒定电流(CC)和恒定电压(CV),从而简化了控制方案。该系统通过打开一个开关实现带有两线圈拓扑的CC输出,并以带有三线圈拓扑的CV模式运行。此外,当一个高频逆变器(HFI)为大量EB充电时,电感器阵列用于补偿CV模式下的无功功率。所提出的拓扑的次级侧是紧凑的,并且可以减少组件和HFI的数量。给出了三线圈系统基于双D型的线圈设计过程,并限制了三个线圈之间的互感和有限的尺寸。为了证明所提出方法的有效性,建立了一个实验装置,并且两线圈/三线圈混合系统的性能表明,在整个充电过程中,充电电流和电压的波动分别小于0.64和2.12%。此外,与一个HFI连接的两个WPT充电器的性能暗示,仅一个HFI可以为大量EB充电。

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