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实现四重补偿线圈集成以提高电动汽车无线充电系统中接收端的电能传输效率
Enabling Quadruple-D Compensation Coil Integration for Efficient Power Transfer to Receiver in Wireless Power Transfer Systems for EV Charging
| 作者 | Mehmet Zahid Erel · Tabish Imtiaz · Ahmed Elsanabary · Saad Mekhilef · Marizan Mubin · Tey Kok Soon |
| 期刊 | IEEE Journal of Emerging and Selected Topics in Power Electronics |
| 出版日期 | 2025年1月 |
| 技术分类 | 电动汽车驱动 |
| 技术标签 | 储能系统 多物理场耦合 可靠性分析 |
| 相关度评分 | ★★★★ 4.0 / 5.0 |
| 关键词 | 无线电能传输 电动汽车 多线圈结构 集成紧凑耦合器 传输效率 |
语言:
中文摘要
无线电力传输(WPT)为电动汽车(EV)充电提供了便利、可靠且安全的解决方案。近年来,多线圈结构的引入有效提升了功率传输能力并增强了系统可扩展性,但也带来了互感耦合与空间受限等问题。本文提出一种新型紧凑型集成耦合结构,发射端采用两个自然解耦线圈,均与接收线圈耦合以提升功率传输能力。利用ANSYS Maxwell仿真分析该耦合器在偏移工况下的性能,并基于输出电压随横向偏移的变化实现偏移方向的自主检测。实验结果表明,在120 mm气隙、完全对准时,系统最大传输效率达97.08%,输出功率1.147 kW;设计的补偿线圈在对准时可传输243.76 W功率,显著提高了偏移工况下的供电可靠性。
English Abstract
Wireless power transfer (WPT) presents a promising approach for charging electric vehicles (EVs), offering increased convenience, reliability, and safety for EV customers. Recently, the incorporation of multiple coil structures in wireless charging systems has addressed various operational challenges, enhanced power transfer, and provided a scalable solution for EVs. However, cross-coupling issues and space limitation problems arise when multiple coils are introduced to the WPT system. In this article, a novel integrated compact coupler is proposed, including two naturally decoupled coils on the transmitter side, while both are coupled with the receiver coil to improve the power transfer capability of the system. ANSYS Maxwell is employed to simulate the proposed coupler and evaluate its performance under misalignment operations. The proposed wireless charging system inherently detects misalignment direction based on the variation of output voltage with respect to x-misalignment. As a result, the experimental prototype of the designed wireless WPT system presents a peak efficiency of 97.08% at 1.147-kW output power for an air gap of 120 mm under fully aligned condition. Additionally, the designed compensation coil can transfer power of 243.76-W under fully aligned condition and increases reliability in power transfer during misalignment operations.
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SunView 深度解读
该四重补偿线圈集成技术对阳光电源新能源汽车充电产品线具有重要应用价值。研究提出的双发射线圈自然解耦结构与偏移自检测方案,可直接应用于阳光电源无线充电桩产品开发,解决实际应用中车辆停放偏移导致的充电效率下降问题。97.08%的高效率传输与243.76W补偿功率设计,为阳光电源OBC车载充电机与地面充电设备的协同优化提供技术参考。多线圈耦合的ANSYS仿真方法可融入阳光电源多物理场设计体系,提升磁耦合结构的紧凑性与可靠性。该技术与阳光电源现有储能变流器的高频功率变换技术协同,可推动大功率无线充电系统(11kW+)的产品化进程,增强智能充电解决方案的市场竞争力。