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错位条件下基于 “感应盲点” 分析的非接触变压器建模及优化

Translated title of the contribution: Modeling and Optimization of Contactless Transformer Based on "Null Coupling Position" Analysis Under Coil Misalignment
  • 柯光洁*
  • , 陈乾宏
  • , 徐立刚
  • , Siu-Chung WONG
  • , Chi K. TSE
  • *Corresponding author for this work

Research output: Journal Publications and ReviewsRGC 21 - Publication in refereed journalpeer-review

Abstract

In the inductive wireless power transfer system, the specified operating condition such as coil misalignment will cause the coupling coefficient of the contactless transformer to vary in a large range, further affecting the system operating characteristics. To build the coupling coefficient model under large coil misalignment, this paper gives an effective method for calculating the null coupling position based on the method of combining the field concept with circuit. According to the change law of the coupling coefficient, a model for finding the coupling coefficient under coil misalignment is developed. Then a novel contactless transformer with multiple receiving coils is proposed based on the characteristics of magnetic field distribution. A 60 W contactless energy transmission system is designed with the optimized contactless transformer structure. The calculation results of the coupling coefficients are in agreement with actual test results, which proves the correctness of the proposed method and model. The novel coil set has achieved good tolerance to coil misalignment.
Translated title of the contributionModeling and Optimization of Contactless Transformer Based on "Null Coupling Position" Analysis Under Coil Misalignment
Original languageChinese (Simplified)
Pages (from-to)15-20, 120
JournalDianli Xitong Zidonghua/Automation of Electric Power Systems
Volume41
Issue number2
Online published13 Dec 2016
DOIs
Publication statusPublished - 25 Jan 2017
Externally publishedYes

Research Keywords

  • 无线电能传输
  • 感应盲点
  • 耦合系数模型
  • 非接触变压器
  • Contactless transformer
  • Null coupling position
  • coupling coefficient model
  • Wireless power transfer

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