A three-phase coil coupling wireless power transfer pad for electric vehicles battery charging systems

被引:0
作者
Aganti, Mahesh [1 ]
Chokkalingam, Bharatiraja [1 ]
Padmanaban, Sanjeevikumar [2 ]
Williamson, Sheldon S. [3 ]
机构
[1] SRM Inst Sci & Technol, Ctr Elect Mobil, Dept Elect & Elect Engn, Chengalpattu 603203, Tamil Nadu, India
[2] Univ South Eastern, Dept Elect Engn Informat Technol & Cybernet, N-3679 Notodden, Norway
[3] Ontario Tech Univ, Elect Comp & Software Engn, Oshawa, ON, Canada
关键词
Cross-coupling; Finite element analysis; High-frequency inverter; Inductive power transfer; Magnetic coupling pad; Wireless charging system; Three-phase wireless charging; DESIGN;
D O I
10.1016/j.rineng.2024.103856
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Resonant Inductive Power Transfer (RIPT) is pivotal in advanced Electric Vehicle (EV) charging systems, offering safety, reliability, and automation ease. The magnetic pad design within RIPT-based Wireless Charging Systems (WCS) significantly influences power transfer efficiency. Three-phase magnetic couplers outshine their singlephase counterparts in energy transfer capacity, offering benefits like rotating magnetic flux and reduced ferrite mass. This article analyzes a three-phase magnetic coupler design featuring a circular geometry, characterized by enhanced angular misalignment tolerance, ferrite-friendly structure, and ease of design. Named the "Three Half Circular Coil" (3HCC) pad, it comprises three half-circular coils arranged in a circular pattern. The performance of this design is rigorously analyzed using MATLAB and Ansys Finite Element for a 7.7 kW system. The proposed model is benchmarked against a tripolar coil, a three-phase rectangular coil, and a conventional single-phase circular coil. 7.7 kW experimental models are designed and analyzed to investigate cross-coupling effects as the coil moves away from the origin. This article underscores the critical role of RIPT in EV charging systems, highlights the advantages of three-phase magnetic couplers over single-phase, and showcases the effectiveness of the proposed 3HCC design.
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页数:12
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