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Electromagnetic Safety Evaluation and Protection Methods for a Wireless Charging System in an Electric Vehicle

机译:电动汽车无线充电系统的电磁安全评估和保护方法

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The electromagnetic fields surrounding high-power wireless power transfer (WPT) systems in electric vehicles (EVs) may threaten the electromagnetic safety (EMS) of pedestrians nearby. This paper first evaluates the dosimetry for a 10 kW WPT system for EVs. A total of three human models and a full-size EV model are constructed and used. Numerical computation with the finite element method is implemented for three exposure scenarios of the adult models, including an unexplored and severe one. A child model lying in the same position as the adult model is also evaluated. To satisfy the EMS requirement, the maximum allowable power (MAP) of the WPT system is merely 1.0 kW. Then, three feasible measures are proposed to protect people from the electromagnetic hazards of WPT systems. 1) A safety distance for pedestrians during the normal charging of the system is established. 2) A detailed power control strategy is presented on the basis of the findings regarding the distribution characteristics of the near-field magnetic field of the WPT system. 3) A novel method of detecting the offset distance of a WPT system is proposed, and a small experimental WPT system coupler is developed to verify the method. These measures can effectively alleviate the conflict between the MAP of the system and EMS requirements for people.
机译:电动车辆(EVS)围绕大功率无线电力传输(WPT)系统的电磁场可能会威胁到附近行人的电磁安全(EMS)。本文首先评估10 KW WPT系统的剂量测定值。建造和使用共三种人类模型和全尺寸的EV模型。具有有限元方法的数值计算用于成人模型的三种曝光场景,包括未探索和严重的情况。还评估了与成人模型相同位置的子模型。为了满足EMS要求,WPT系统的最大允许功率(地图)仅为1.0 kW。然后,提出了三项可行措施来保护人们免受WPT系统的电磁危害。 1)建立了系统正常充电期间行人的安全距离。 2)基于关于WPT系统的近场磁场的分布特性的研究结果介绍了详细的功率控制策略。 3)提出了一种检测WPT系统的偏移距离的新方法,并开发了小型实验WPT系统耦合器以验证该方法。这些措施可以有效缓解系统地图与人民的EMS要求之间的冲突。

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