Conducted Emission and Power Line Filter Design of a Three-phase Grid-connected Battery Charger for Automotive Application

M. Bosi, Mattia Simonazzi, L. Peretto, L. Sandrolini
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Abstract

The growing diffusion of off-board battery chargers for electric vehicles leads to a severe increase in electromagnetic interference (EMI) in power grids, and in particular of conducted disturbances. The battery chargers must therefore be equipped with suitable power line filters to reduce conducted emission (CE). In order to efficiently design the three-phase filter, the modal decomposition of the disturbance is exploited. In three-phase systems both the differential mode (DM) and common mode (CM) components of the specific phase disturbances generally contribute differently to the overall CE. This paper shows a simple methodology for the design of a three-phase EMI filter using a setup capable of simultaneously measuring the conducted disturbances on each phase and directly calculating the modal components. The method is applied to a 25 kW three-phase off-board battery charger.
汽车用三相并网电池充电器的传导发射与电源线滤波设计
电动汽车车载充电器的日益普及导致电网电磁干扰(EMI),特别是传导干扰的严重增加。因此,电池充电器必须配备合适的电源线滤波器,以减少传导辐射(CE)。为了有效地设计三相滤波器,利用了扰动的模态分解。在三相系统中,特定相位扰动的差模(DM)和共模(CM)分量通常对总体CE的贡献不同。本文展示了一种设计三相EMI滤波器的简单方法,该方法使用能够同时测量每个相位上的传导干扰并直接计算模态分量的装置。该方法应用于25kw三相车载电池充电器。
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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