优化铁氧体磁芯,降低电动汽车无线充电系统双d垫磁芯损耗

Mostak Mohammad, Seungdeog Choi
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引用次数: 26

摘要

为降低双d (DD)电源垫在电动和插电式混合动力汽车(EV/PHEV)无线充电系统中的芯损耗,提出了一种优化的DD电源垫芯结构。在85khz左右的工作频率下,铁芯损耗是典型大功率无线充电系统中最重要的损耗之一。功率铁氧体的铁芯损耗主要取决于工作频率和铁芯内的磁场密度。对于某些应用,频率通常是固定的,因此,应优化磁芯内的磁场密度以减少损耗。双d (DD)衬垫的磁芯磁场密度与非极衬垫有很大的不同;因此,考虑到铁芯损耗,传统的棒状或板式铁芯不能提供最佳性能。本文提出了一种优化的磁芯结构,使磁芯内磁通密度均匀,损耗最小。对所提出的优化模型进行了有限元仿真,并与传统的扁平型铁芯进行了比较。最后,通过3.2kW无线双d (DD)型无线充电垫对所提模型进行验证。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optimization of ferrite core to reduce the core loss in double-D pad of wireless charging system for electric vehicles
In this paper, an optimized core structure is proposed for the double-D (DD) power pad to reduce its core loss in a wireless charging system for Electric and Plug-in Hybrid Electric Vehicle (EV/PHEV) application. At around 85 kHz operating frequency, the core loss is found to be one of the most significant loss in typical wireless charging system of high power application. The core loss in power ferrite mainly depends on the operating frequency and magnetic field density in the core. The frequency is usaully fixed for certain appication, therefore, the magnetic field density in the core is be to optimized to reduce the loss. The magnetic field density in core of a double-D (DD) pad has very different pattern compared to unpolar pad; therefore traditional bar or plate core does not provide the optimum performance considering core loss. In this paper, an optimized core structure is proposed to make the flux density uniform in the core and minimize its loss. The proposed optimized model is simulated in finite element analysis (FEA), and compared with traditional flat type core. Finally, the proposed model is verified through a 3.2kW wireless Double-D (DD) type wireless charging pad.
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