基于条形多极检测线圈的电动汽车无线充电金属物体检测系统

Hui Wang, Yuanchao Wu, Zhiwei Shen, Wenbin Pan, Yiming Zhang
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引用次数: 0

摘要

在电动汽车无线充电技术中,金属物体意外进入没有直接物理接触的充电区域是一个常见而紧迫的问题。涡流可以在金属物体中产生,产生大量的热量,并可能导致严重的后果,如火灾。目前商业应用的金属物体探测技术存在探测灵敏度低、影响电力传输磁场、存在盲区等问题。针对这些不足,本文提出了一种用于电动汽车无线充电的金属物体检测系统。设计长条检测线圈,置于发射线圈上方。每个条带检测线圈由16个极性交变的单极线圈组成,可以实现检测线圈与发射线圈的去耦,消除对无线电力传输系统磁场的干扰。采用三阶萨伦键通滤波器和比例放大电路,提高了金属物体检测的灵敏度和精度。最后,搭建了用于电动汽车无线充电的金属物体检测实验平台,该系统能够在金属物体可能存在的位置灵敏、准确地检测出金属物体的存在。
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A Metal Object Detection System for Electric Vehicle Wireless Charging System Based on Strip Multi-polar Detection Coils
A common and urgent problem in electric vehicle wireless charging technology is the accidental entry of metal objects into the charging area where there is no direct physical contact. Eddy currents can be induced in the metal objects, generating a large amount of heat and potentially leading to serious consequences such as fire. The current commercially applied metal object detection technology has the problems of low detection sensitivity, affecting the power transmission magnetic field, and the existence of blind zones. In view of these shortcomings, a metal object detection system for wireless charging of electric vehicles is proposed in this paper. Long strip detection coils are designed and placed above the transmitter coil. Each strip detection coil is composed of 16 unipolar coils having alternating polarities, which can realize decoupling between the detection coil and the transmitter coil and eliminate the interference to the magnetic field of the wireless power transmission system. A third-order Sallen-Key high pass filter and a proportional amplifier circuit are used to improve the sensitivity and accuracy of metal object detection. Finally, an experimental platform of metal object detection for electric vehicle wireless charging is built, and the proposed system can detect the existence of metal objects sensitively and accurately at the location where they may exist.
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