Safety considerations of wireless charger for electric vehicles — A review paper

Hai Jiang, Paul W. Brazis, Mahmood Tabaddor, Joseph Bablo
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引用次数: 62

Abstract

Wireless power transmission is a promising technology which attracts attention in many fields and products. With mobile electronic products being prevalent, such as cellphones and PDAs, removing the power cord becomes a natural progression of achieving the ultimate mobility of the product. Wireless chargers for Electric Vehicles (EVs) would also be a convenient feature, avoiding any need to remember to plug in a power cord after parking the vehicle. Additional safety advantages may also be achieved due to eliminating exposed contacts. Nevertheless, wireless charging for EV is an application requiring high electrical power (up to hundreds of kilowatts) and larger area of wireless power transmission which increases electromagnetic field exposure. Thus, application of wireless charging to an EV requires a comprehensive analysis to ensure consumer safety. This paper focuses on the safety considerations of wireless charging for EVs, including potential electrical shock hazards, magnetic field exposure hazards, fire hazards, etc. It provides a historical background of wireless charging, particularly for EVs. It also reviews two potential technologies applicable to wireless charging of EVs. The concept of Hazard Based Safety Engineering (HBSE) is applied to the problem and UL's training's program is introduced.
电动汽车无线充电器的安全考虑-综述
无线电力传输是一项很有前途的技术,在许多领域和产品中都受到关注。随着手机、pda等移动电子产品的普及,去除电源线成为实现产品最终移动性的自然过程。电动汽车(ev)的无线充电器也将是一个方便的功能,避免停车后需要记住插入电源线。由于消除了暴露的触点,也可以获得额外的安全优势。然而,电动汽车无线充电是一种需要高功率(高达数百千瓦)和更大的无线电力传输面积的应用,这增加了电磁场暴露。因此,在电动汽车上应用无线充电需要进行全面的分析,以确保消费者的安全。本文重点介绍了电动汽车无线充电的安全注意事项,包括潜在的触电危险、磁场暴露危险、火灾危险等。它提供了无线充电的历史背景,特别是电动汽车。本文还介绍了两种适用于电动汽车无线充电的潜在技术。将基于危害的安全工程(Hazard Based Safety Engineering, HBSE)的概念应用于该问题,并介绍了UL的培训方案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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