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Analysis of wireless power transfer system based on 3-D finite-element method including displacement current

机译:基于包含位移电流的3-D有限元法的无线电力传输系统分析

摘要

With the advent of electronic technology, researchers are devoting increasing interests to wireless power transfer methods. Generally finite-element method (FEM) is a powerful tool for numerical simulation of such systems. Due to the relatively high operating frequency, the presence of inductance and distributed capacitance in the system as well as eddy current and displacement current become two essential issues in the study of electromagnetic field distribution in wireless power transfer systems. One of the major problems to be addressed is the gap between low and high frequencies as conventional low frequency methods cannot include displacement current, while common high frequency methods focus mainly on the ultrahigh frequencies, such as in antenna studies. In this paper, a 3-D FEM including displacement current is developed to model wireless power transfer system to include displacement current and eddy current and close the gap of high and low frequency modeling methods. No frequency sweeping, which is required in conventional studies, is necessary in the proposed algorithm. Hence the computing time of the proposed algorithm requires only 1.5% of the normal time domain FEM method and this is a significant accomplishment for the electromagnetic community.
机译:随着电子技术的出现,研究人员对无线电力传输方法越来越感兴趣。通常,有限元方法(FEM)是用于此类系统数值模拟的强大工具。由于相对较高的工作频率,系统中电感和分布电容的存在以及涡流和位移电流已成为研究无线电力传输系统中电磁场分布的两个基本问题。要解决的主要问题之一是低频和高频之间的差距,因为常规的低频方法不能包括位移电流,而常见的高频方法主要集中于超高频,例如在天线研究中。在本文中,开发了一种包含位移电流的3D有限元模型来对无线电力传输系统进行建模,以包含位移电流和涡流并缩小高频和低频建模方法的差距。所提出的算法中不需要传统研究中需要的扫频。因此,所提出算法的计算时间只需要普通时域有限元方法的1.5%,这对于电磁界来说是一个重大成就。

著录项

  • 作者

    Zhang X; Zhao Y; Ho SL; Fu WN;

  • 作者单位
  • 年度 2012
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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