Performance Analysis and Loss Estimation of an AC-DC PFC Topologies of an EV Charger

Sushant Gupta, V. V. Kumar
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Abstract

The front-end AC-DC power factor correction (PFC) converter of an electric vehicle (EV) charger is essential to achieve the grid side power factor close to unity and maintain the input current total harmonic distortion (THD) within permissible limits. The other desirable attributes are high power density, high efficiency, and simple structure. However, several articles have discussed the different PFC topologies to achieve these qualities with the difference in the number of switching devices employed and conduction modes. So, this paper aims to present the design and performance comparison of four common PFC topologies. Further, the loss analysis using the datasheet parameters of switching devices and operational modes of the PFC converters have been discussed. The converters, namely, active boost PFC, interleaved-boost PFC, dual boost PFC and totem-pole PFC, have been designed for CCM operation with the output power/voltage of 3. 3kW/400V. Moreover, these topologies are simulated in MATLAB/ Simulink, and their performances in terms of the amount of THD in input current, output voltage regulation, and switching losses have been obtained. The analysis shows that the bridgeless totem-pole PFC converter shows superior performance among all four topologies taken for study due to a low number of switching devices in the current conduction path and reduced switching losses.
电动汽车充电器交直流PFC拓扑性能分析及损耗估计
电动汽车充电器的前端交直流功率因数校正(PFC)变换器是实现电网侧功率因数接近统一,并将输入电流总谐波失真(THD)保持在允许范围内的关键。其他可取的特性是高功率密度、高效率和简单的结构。然而,几篇文章已经讨论了不同的PFC拓扑结构,以实现这些质量,所采用的开关器件数量和传导模式的差异。因此,本文旨在介绍四种常见PFC拓扑的设计和性能比较。此外,还讨论了使用开关器件的数据参数和PFC转换器的工作模式进行损耗分析。设计了用于CCM工作的有源升压PFC、交错升压PFC、双升压PFC和图腾柱PFC转换器,输出功率/电压为3。3 kw / 400 v。并在MATLAB/ Simulink中对这些拓扑进行了仿真,得到了它们在输入电流中THD量、输出稳压和开关损耗方面的性能。分析表明,由于电流传导路径中的开关器件数量少,开关损耗降低,无桥图腾极PFC变换器在所有四种拓扑结构中表现出优异的性能。
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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