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Design Guidelines of Inductive Coils Using a Polymer Bonded Magnetic Composite for Inductive Power Transfer Systems in Electric Vehicles

机译:电气键合磁性复合材料在电动汽车电感电力传输系统中使用聚合物键合磁性复合材料设计指南

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This article studies design guidelines to optimize the inductive coils for electric vehicles by replacing the standard compact ferrite core with a compound of polymers, nanoparticles, and tile-links of ferrite and by reviewing different aspects of the winding to improve mechanical behavior and efficiency. A system composed of the studied vehicle assembly and ground assembly from the society of automotive engineers' recommended practice is defined. Fast three-dimensional (3-D) finite element simulations are performed by evaluating different geometric aspects of the vehicle assembly. In doing so, the variation of coupling factor and inductance related to the geometry can be observed and compared in order to analyze the performance when the amount of compact ferrite is reduced. The polymer bonded magnetic is, then, incorporated to improve the decreased magnetic behavior due to the reduction in ferrite. In previous works, the modeling of the litz-wire and polymer bonded magnetic were developed to accelerate the simulations. In this article, we include the modeling of the compact ferrite tile-links to further reduce the time consumption of these simulations. Moreover, simple two-dimensional simulations are described to study the windings' parasitic capacitances. The design guidelines, based on fast 3-D simulations, are detailed and validated with particular prototypes.
机译:本文通过用铁氧体的聚合物,纳米粒子和瓦片连接的化合物更换标准致块铁氧体芯来研究设计指南,以优化电动车辆的电感线圈,并通过回顾绕组的不同方面,提高机械性能和效率。定义了由来自汽车工程师推荐练习的研究的研究车组组件和地面组件组成的系统。通过评估车辆组件的不同几何方面来执行快速的三维(3-D)有限元模拟。在这样做时,可以观察到与几何形状相关的耦合因子和电感的变化,并比较,以便在减小致密铁氧体的量时分析性能。然后,聚合物键合磁性掺入以改善由于铁氧体的还原而改善降低的磁力行为。在以前的作用中,开发了Litz-Wire和聚合物键合磁性的建模以加速模拟。在本文中,我们包括Compact Ferrite瓦片链路的建模,以进一步减少这些模拟的时间消耗。此外,描述了简单的二维模拟来研究绕组'寄生电容。基于快速3-D模拟的设计指南详细验证,并以特定的原型验证。

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