电磁线圈无线输电场路耦合方程的分析与实验

Song Xian-jin, L. Guoqiang, L. Yanhong, Z. Chao, Xu Xiaoyu
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引用次数: 4

摘要

无线电力传输(WPT)是一种支持负载设备以非接触方式从电源获取电力的电力传输技术。空心螺线管作为谐振线圈广泛应用于工程中,通常基于静磁场进行分析。在实际应用中,线圈经常被交流电激励,因此研究螺线管线圈的时谐电磁解就显得尤为重要。本文首先从麦克斯韦时谐方程出发,导出了同轴对称螺线线圈的交变磁场矢量势,并建立了解析表达式。推导了线圈的电场强度和感应电压的表达式,得到了WPT的场路耦合方程,该方程显示了输入和输出变量之间的特定约束关系。最后,通过实验对结果进行了验证。在给定线圈结构和尺寸的情况下,用方程可以描述不同线圈跨度下的传动特性和输入输出变量的变化,这对WPT的设计具有一定的指导意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Analyses and experiments of field-circuit coupling equations for wireless power transfer using solenoidal coils
Wireless power transfer (WPT) is a kind of power transmission technology with which load devices can be supported to take power from the power source in a non-contacting way. Hollow solenoidal coils are used as resonant coils extensively in engineering projects which are usually analyzed based on magnetostatic fields. In practice coils are often excited by alternating currents, and it is particularly significant to carry out studies on the time-harmonic electromagnetic solutions to solenoidal coils. In this study, the alternating magnetic vector potential is derived from Maxwell's time-harmonic equations, and the analytic expressions are established for coaxially symmetric solenoidal coils firstly. Then the expressions for the electric field intensity and the induced voltages of the coils are deduced, and the field-circuit coupling equations for WPT which show the specific constraint relationship between the input and output variables are obtained. Finally, the results are verified by experiment. The transmission characteristics and the variation of the input and output variables under different coils' spans can be described by the equations when the coils' structures and sizes are given, which have some significance for WPT design.
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