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A Misalignment-Tolerant Series-Hybrid Wireless EV Charging System With Integrated Magnetics

机译:具有集成磁学的耐不准串联的混合无线EV充电系统

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摘要

Electric vehicles (EVs) are becoming increasingly popular as a mean of mitigating issues associated with fossil fuel consumption in transportation systems. A wireless inductive power transfer (IPT) interface between EV and the utility grid has several key advantages, such as safety, convenience, and isolation. However, physical misalignments between the pads of IPT charging systems used in EVs are unavoidable and cause variations in key system parameters, significantly increasing losses and affecting power throughput. This paper presents a novel series-hybrid topology in which the series inductors of the primary and pick-up inductor–capacitor–inductor (LCL) networks are integrated into polarized magnetic couplers to improve the system performance under pad misalignment. A mathematical model is developed to investigate the behavior of the proposed system under misalignment. To demonstrate the viability of the proposed method, the results of a 3.3-kW prototype series-hybrid IPT system are presented, benchmarked against a conventional IPT system. Experimental results clearly indicate that the proposed system maintains the output power within ±5% of its rated power despite the pad misalignment. The proposed system is efficient, reliable, and cost effective in comparison to conventionalLCL-andCL-compensated IPT systems.
机译:作为减轻与运输系统中化石燃料消耗有关的问题的一种手段,电动汽车(EV)变得越来越流行。 EV与公用电网之间的无线感应功率传输(IPT)接口具有几个关键优势,例如安全性,便利性和隔离性。但是,不可避免的是,EV中使用的IPT充电系统的焊垫之间的物理失准会导致关键系统参数的变化,从而显着增加损耗并影响功率吞吐量。本文提出了一种新颖的串联混合拓扑,其中初级和拾取电感器-电容器-电感器的串联电感器( n LCL n)网络已集成到极化磁耦合器中,以提高焊盘未对准时的系统性能。建立了数学模型以研究所提出系统在未对准情况下的行为。为了证明所提出方法的可行性,提出了以传统IPT系统为基准的3.3 kW原型串联式混合IPT系统的结果。实验结果清楚地表明,尽管焊盘未对准,但所提出的系统仍将输出功率保持在其额定功率的±5%内。与常规的 n <斜体xmlns:mml =“ http://www.w3.org/1998/Math/MathML ” xmlns:xlink =“ http: //www.w3.org/1999/xlink “> LCL- nand n <斜体xmlns:mml = ” http://www.w3.org/1998/Math/MathML “ xmlns :xlink = “ http://www.w3.org/1999/xlink ”> CL n补偿的IPT系统。

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