无线电动车充电铁氧体电磁屏蔽的高温影响研究

Bo Zhang, Yukiyasu Yamauchi, V. Galigekere, O. Onar, Mostak Mohammad
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引用次数: 0

摘要

电动汽车无线充电是一种新兴的非接触式充电技术,具有方便、灵活等优点。然而,地面下和地面上的嵌入式充电垫将充电线圈、铁氧体屏蔽和相关部件暴露在潜在的恶劣外部环境中。为了研究这种极端温度条件下的电磁屏蔽性能,我们测试了铁氧体屏蔽材料在低至-50℃至高至240℃的温度下的磁导率特性。参考美国官方记录的最低和最高温度,本文假设WPT应用的冬季最冷和夏季最热的运行温度范围为-50℃~ 57℃。通过三维(3D)瞬态仿真,研究了低温和高温对电磁屏蔽性能的影响,模拟了电磁性能、屏蔽和相关的杂散磁发射。根据铁氧体测试数据,在-50℃低温到57℃高温范围内,铁氧体的相对磁导率为2550 ~ 3727。仿真研究表明,在这些恶劣的环境温度条件下,WPT的电磁屏蔽性能不会受到明显影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Severe Temperature Impact Study on Ferrite Electromagnetic Shielding for Wireless Electric Vehicle Charging
Wireless charging of an electric vehicle (EV) is an emerging technology that enables noncontact charging, which has advantages in terms of convenience and flexibility. However, the embedded charging pads under and on the ground expose the charging coils, ferrite shielding, and related components to a potentially severe external environment. To study the electromagnetic shielding performance under such extreme temperature conditions, ferrite shielding material's permeability characteristics are tested under temperatures as low as -50°C to as high as 240°C. Referring to the official recorded lowest and highest temperature of the United States, in this paper, it is assumed that the operation temperature ranges from -50°C to 57°C as the coldest winter and hottest summer environment for WPT application. Electromagnetic performance, shielding, and associated stray magnetic emissions are simulated by using three-dimensional (3D) transient simulations to study the impact of low and high temperature on electromagnetic shielding performance. Based on ferrite testing data, from -50°C low temperature to 57°C high temperature, the ferrite's relative permeability ranges from 2550 to 3727. The simulation study indicates that there won't be significant impact on the EM shielding performance for WPT operated under those severe environment temperature conditions.
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