集成于电动汽车的静态无线充电线圈的设计

S. Bhattacharya, Y. Tan
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引用次数: 20

摘要

本文分析了影响电动汽车静态无线充电的各种因素,并给出了这种无线充电的最有效运行状态。本文的主要目标是利用磁共振通过空气无线供电,并确定电源对线圈尺寸和其他因素的依赖关系。分析了不同类型的源和负载线圈,如圆形、螺旋形和螺旋形。不同形状的线圈也被考虑在内,如正方形和圆形。通过分析发现,从等效电路的角度和耦合模式理论可以推导出功率传输效率。分析表明,效率与线圈半径、线圈之间的距离和线圈的q因子有关。在此基础上,对线圈和线圈间距的优化设计进行了概述。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design of static wireless charging coils for integration into electric vehicle
This paper analytically discusses various factors that affects static wireless charging of an electric vehicle and also presents the maximum efficient operating regime of this wireless power transfer. The main goal of this paper is using magnetic resonance to supply power wirelessly via air and to determine the dependency of power supply on coil dimensions and other factors. Different types of source and load coils are analyzed like circular, spiral and helical. Different shapes of the coils are also taken into account like square and circular. From the analysis, it is found that the efficiency of power transfer is derivable by the equivalent circuit point of view and also using coupled mode theory. The analysis shows that the efficiency is dependent on the coil radius, distances between the coils and the Q-factors of the coils. From the analysis, an overview of the optimum design of the coils and distance between the coils has been given.
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