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Shielding Analysis of Coaxial High Frequency Transformers used for Electric Vehicle On-Board Charging Systems

机译:电动汽车车载充电系统用同轴高频变压器的屏蔽分析

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摘要

Electric Vehicle (EV) charging can only be conducted at specific places as of the dependence on the charging facilities. External charging facilities are usually bulky and expensive due to the use of low frequency modulation technique. For this reason, EV on-board charging system becomes a popular concept in nowadays due the improvement of high frequency (HF) power electronics [1]. The EV's on-board charging system requires high power density and a HF transformer to fulfill the design requirements of a light-weight, compact, and high power density [2]. This paper introduces a High Frequency Coaxial Transformer (HFCT) with a power efficiency of >99.5% and operates with a frequency of 100 kHz. The power rating of the HFCT can be easily scaled from 2.5 to 20 kW. The electromagnetic interferences are growing by the increased operating frequency, so that an inserted copper Faraday shield is used to deal with this issue. A shielding analysis, with focus on the insertion losses, is undertaken by utilizing Finite Element Method (FEM) based numerical techniques [3-5]
机译:电动汽车(EV)的充电只能在特定的地方进行,具体取决于充电设施。由于使用低频调制技术,外部充电设备通常笨重且昂贵。因此,由于高频(HF)电力电子设备的改进,EV车载充电系统已成为当今流行的概念[1]。电动汽车的车载充电系统需要高功率密度和高频变压器,才能满足轻便,紧凑和高功率密度的设计要求[2]。本文介绍了一种高频同轴变压器(HFCT),其功率效率> 99.5%,工作频率为100 kHz。 HFCT的额定功率可以轻松地从2.5 kW扩展到20 kW。随着工作频率的增加,电磁干扰也越来越大,因此使用插入的法拉第铜屏蔽罩来解决此问题。利用基于有限元法(FEM)的数值技术进行屏蔽分析,重点放在插入损耗上[3-5]

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