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Optimization of Ferrite Core to Reduce the Core Loss in Double-D Pad of Wireless Charging System for Electric Vehicles

机译:铁氧体磁芯的优化,降低电动汽车无线充电系统双D垫磁芯损耗

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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.
机译:在本文中,提出了一种针对双D(DD)功率焊盘的优化芯结构,以降低电动和插入式混合动力电动车(EV / PHEV)应用中的无线充电系统中的核心损耗。在85 kHz的工作频率约为85 kHz,核心损耗被认为是高功率应用典型无线充电系统中最显着的损失之一。电力铁氧体中的磁芯损耗主要取决于核心中的工作频率和磁场密度。因此,频率是Quauly固定的,因此,核心中的磁场密度是优化的,以减少损耗。与非极化垫相比,双D(DD)焊盘的核心磁场密度具有非常不同的图案;因此,传统的杆或板芯不提供考虑核心损耗的最佳性能。在本文中,提出了一种优化的芯结构,使芯中的磁通密度均匀,并最大限度地减少其损耗。所提出的优化模型是在有限元分析(FEA)中的模拟,并与传统的平坦型芯相比。最后,通过3.2kW无线双D(DD)无线充电焊盘验证了所提出的模型。

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