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A new method to implement the constant Current-Constant Voltage charge of the Inductive Power Transfer system for Electric Vehicle applications

机译:一种实现电动汽车应用感应电力传输系统恒流恒压电荷的新方法

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Inductive Power Transfer (IPT) method becomes more and more popular for the Electric Vehicle (EV) battery charger due to its convenience and safety as compared to the plugged-in charger. In recent years, Lithium batteries are increasingly used in EVs and Constant Current/Constant Voltage (CC/CV) charge needs to be adopted for the high efficiency charge. However, it is not easy to design the IPT Battery Charger which can charge the battery with CC/CV charge under the wide range of load variation due to the wide range of variation in its operating frequency in the case of frequency control or in duty and phase shift in the case of duty and phase shift control. This paper proposes a new design and control method which makes it possible to implement the CC/CV mode charge with minimum frequency variation (around 1 kHz) during all over the charging process. A 6.6 kW prototype charge has been implemented and 96.1 % efficiency was achieved with 20 cm air gap between the coils.
机译:电感电力传输(IPT)方法对于电动车辆(EV)电池充电器而变得越来越受欢迎,因为与插入式充电器相比,由于其便利性和安全性而变得更加流行。近年来,锂电池越来越多地用于EVS,需要采用恒定的电流/恒定电压(CC / CV)电荷,以便高效电荷。然而,设计IPT电池充电器并不容易,该电池充电器可以在频率控制或值得义务的情况下,由于其工作频率的宽范围范围内的宽范围内,可以在宽范围内为电池充电。在占班和相移控制的情况下的相移。本文提出了一种新的设计和控制方法,使得可以在所有在充电过程中实现具有最小频率变化(约1kHz)的CC / CV模式电荷。已经实施了6.6千瓦原型电荷,效率为96.1%,在线圈之间的气隙20厘米。

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