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Quantitative design and analysis of relay resonators in wireless power transfer system

机译:无线电力传输系统中中继谐振器的量化设计与分析

摘要

Wireless power transfer systems are finding increasing applications which can enhance the living standard of the general public. Typical examples are wireless charging of mobile phone batteries and car batteries. Thanks to the advent of power electronics in the past few decades, some wireless charging systems are now emerging in the commercial sector. However, the transfer efficiency and transfer distance of these chargers are limiting the technology to a few specific applications only. In order to increase the transfer distance, some researchers have successfully proposed to use relay coils to improve their wireless power transfer efficiency. In this paper, the role of relay resonator is examined critically. The reported findings indicate that it is not always desirable to have relay coils in wireless charger as the relay resonator may increase, or sometimes reduce, the overall power transfer efficiency. The findings also reveal that there is an optimal position for the designer to locate the relay resonator to maximize the power transfer efficiency.
机译:无线功率传输系统正在发现越来越多的应用,这些应用可以提高公众的生活水平。典型示例是手机电池和汽车电池的无线充电。在过去的几十年中,由于电力电子技术的出现,一些无线充电系统正在商业领域兴起。但是,这些充电器的传输效率和传输距离仅将技术限制在某些特定的应用中。为了增加传输距离,一些研究人员已经成功地提出使用中继线圈来提高其无线电力传输效率。本文对中继谐振器的作用进行了严格的研究。报告的发现表明,并非总是希望在无线充电器中安装继电器线圈,因为继电器谐振器可能会增加或有时会降低总体功率传输效率。研究结果还表明,设计人员可以找到一个最佳位置来定位中继谐振器,以使功率传输效率最大化。

著录项

  • 作者

    Zhang X; 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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