基于最优负载阻抗跟踪控制的65kw无线充电站设计

IF 4.8 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC
Martin Zavrel;Pavel Drabek;Vladimir Kindl;Michal Frivaldsky
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引用次数: 0

摘要

本文介绍了一种用于现代电动汽车(e-mobility)应用的无线充电器的低级控制方法的设计和开发。它概述了电动汽车市场的未来趋势和无线电力传输(WPT)系统的技术进步,并将它们与拟议的无线充电器设计方法相结合。所提出的解决方案的一个关键优势是它与传统有线充电站完全具有竞争力。本文的工作重点是无线充电站控制系统的设计,该系统具有主动和最优负载阻抗跟踪的特点。这种跟踪适应不同的负载参数(如电池特性)和耦合元件的错位,确保最大的功率传输效率和由电源电压控制的大功率传输。该系统完全符合SAE J2954电动汽车无线充电标准。开发的测试系统在15至25厘米的气隙中实现了高达65千瓦的功率传输,整体系统效率超过95.5%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design of a 65-kW Wireless Charging Station Characterized by Optimal Load Impedance Tracking Control
This article presents the design and development of a low-level control approach for a wireless charger intended for modern electro-mobility (e-mobility) applications. It outlines future trends in the e-mobility market and technical advancements in wireless power transfer (WPT) systems, aligning them with the proposed wireless charger design methodology. A key advantage of the proposed solution is its full competitiveness with conventional wired charging stations. The primary focus of this work is the control system design for the wireless charging station (WCS), which features active and optimal load impedance tracking. This tracking adapts to varying load parameters (such as battery characteristics) and misalignments in coupling elements, ensuring maximum power transfer efficiency and high-power transfer controlled by supply voltage. The system complies fully with the SAE J2954 standard for wireless charging in e-mobility. The developed test system achieves power transfer of up to 65 kW across an air gap of 15 to 25 cm, with an overall system efficiency exceeding 95.5%.
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来源期刊
CiteScore
9.60
自引率
0.00%
发文量
25
审稿时长
10 weeks
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