Design of an on-board charger for universal inductive charging in electric vehicles

Nan Liu, T. Habetler
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引用次数: 3

Abstract

Inductive Power Transfer (IPT) technology is a potential solution in battery charging of electrical vehicles (EV). However, problems of varied magnetic coupling caused by coil misalignment still limit its practical applications. Besides improvements of inductive chargers, the EV manufacturers need a standard on the power-receiving part for adaptive charging in various conditions. Accordingly, this paper proposes design of an on-board charger, which cooperates with the previously proposed universal inductive charger (UIC), for more universal, efficient and safe EV charging in various coupling and load conditions. The optimal design of the secondary LC circuit and the receiving pad is provided. A simple and low-cost control method based on the dual-mode operation of the DC-DC converter is applied, to coordinate with the UIC for more accurate control on the frequency and voltage. Simulation results and a prototype validate the proposed on-board charger is robust and applicable, and performs better for universal inductive charging.
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电动汽车通用感应充电车载充电器的设计
感应功率传输(IPT)技术是电动汽车电池充电的一种潜在解决方案。然而,由于线圈不对中引起的磁耦合变化问题仍然限制了其实际应用。除了对感应式充电器进行改进外,电动汽车制造商还需要对功率接收部分制定标准,以便在各种条件下进行自适应充电。基于此,本文提出了一种车载充电器的设计方案,该方案与通用感应充电器(UIC)相配合,使电动汽车在各种耦合和负载条件下的充电更加通用、高效和安全。给出了二次LC电路和接收垫的优化设计。采用一种简单、低成本的基于DC-DC变换器双模工作的控制方法,配合UIC对频率和电压进行更精确的控制。仿真结果和样机验证了该车载充电器的鲁棒性和适用性,并能较好地实现通用感应充电。
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