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Wireless Electric Vehicle Charger With Electromagnetic Coil-Based Position Correction Using Impedance and Resonant Frequency Detection

机译:无线电动车充电器采用电磁线圈的位置校正使用阻抗和谐振频率检测

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摘要

Wireless power transfer (WPT) is an enabling technology for electric vehicles (EV), as it eliminates driver intervention during charging. Major challenges to the adoption ofWPT systems include coil misalignment and large air-gap WPT, both of which degrade the transfer efficiency. To address these issues, this article presents a compact WPT charger for the rear of an EV, capable of correcting lateral misalignment.x using two integrated electromagnetic coils. The air-gap.y is reduced due to the rear placement of the charging pads. The variation in.y, however, increases due to vehicle parking accuracy, which impacts the operation of the electromagnetic coils. This article proposes a closed-loop threestage position-correcting control algorithm capable of detecting the impedance and resonant frequency of the system, which, in conjunction with the electromagnetic coils, results in improved vehicle alignment. The experimental prototype achieves a peak dc-dc efficiency of 90.1% at 5 kW WPT. With.y = 50 mm, the electromagnetic coils laterally align the pads within 1.75 s and correct.x as large as 240 mm. The position-correcting control was successfully demonstrated in four parking scenarios with the charging pads being corrected to within a 10-mm radius of perfect alignment.
机译:无线电力传输(WPT)是一种用于电动车辆(EV)的能力技术,因为它消除了充电期间的驱动器干预。采用系统的主要挑战包括线圈未对准和大型空气间隙WPT,这两者都降低了转移效率。为了解决这些问题,本文提出了一种紧凑WPT充电器用于后的EV的,能够使用两个集成电磁线圈校正横向misalignment.x的。由于充电垫的后部放置,气隙减小。然而,由于车辆停车准确性,该变化增加,这会影响电磁线圈的操作。本文提出了一种能够检测系统的阻抗和谐振频率的闭环三攻位置校正控制算法,其与电磁线圈相结合,导致车辆对准改善。实验原型在5 kW WPT下实现90.1%的峰值DC-DC效率。使用= 50毫米,电磁线圈横向将焊盘与1.75秒内的焊盘对齐,大至240 mm。在四个停车场景中成功地证明了位置校正控制,充电焊盘被校正到10毫米的完美对齐半径内。

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