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电动汽车驱动 储能系统 充电桩 PFC整流 ★ 5.0

采用SPDT继电器优化电动汽车充电器轻载性能的可重构三相交错图腾柱PFC变换器

Reconfigurable Three-Leg Interleaved Totem-Pole PFC Converter with SPDT Relay for Optimized Light Load Performance in EV Chargers

语言:

中文摘要

本文提出一种用于电动汽车充电器的可重构三相交错图腾柱(R-TLI-TP)功率因数校正(PFC)变换器。传统交错结构在轻载时电感电流纹波占比升高,导致输入电流畸变,难以兼顾低总谐波失真(THD)与高功率因数。为此,该变换器通过单刀双掷(SPDT)继电器在重载时切换至三相交错模式,轻载时转为两相交错模式,并将电感串联以提高等效电感,抑制纹波电流。同时,减少轻中载下的开关器件导通数量,提升效率。通过MATLAB仿真及600 W实验样机(输入120 Vrms/50 Hz)验证了其在不同负载下的优异性能。

English Abstract

In this article, a new reconfigurable three-leg interleaved totem pole (R-TLI-TP) power factor correction (PFC) converter is presented for electric vehicle (EV) charger applications. Although interleaved designs offer benefits in traditional PFC converters, operating under light load conditions raises the proportion of ripple current in the inductors. Consequently, this causes line current distortions that compromise the power factor. As a result, maintaining low total harmonic distortion (THD) in the input current while achieving high performance in the PFC converter becomes a challenging task. To address this, the proposed converter uses a single-pole double-throw (SPDT) relay to switch between a three-leg interleaved configuration for heavier loads and a two-leg interleaved configuration for lighter loads. Furthermore, the two-leg interleaved configuration places the inductors in series, which increases the equivalent inductance per phase and reduces the magnitude of the inductor ripple current. Additionally, the proposed converter improves efficiency at light to medium loads by reducing the number of operational switches. The performance of the R-TLI-TP PFC converter is validated through MATLAB simulations under various loading conditions and experimental results from a 600 W laboratory prototype, tested with an AC 120 Vrms, 50 Hz input.
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SunView 深度解读

该可重构交错图腾柱PFC技术对阳光电源充电桩产品线具有重要应用价值。通过SPDT继电器实现重载三相交错与轻载两相串联电感切换,有效解决了传统交错PFC在轻载时THD恶化的痛点,可直接应用于阳光车载OBC和充电桩AC-DC整流级。该方案与阳光现有SiC器件技术结合,可在10%-100%负载范围内保持高效率和低THD,特别适合充电桩夜间低功率充电场景。建议将该动态重构思路扩展至ST储能变流器的PCS前级,通过负载自适应拓扑切换优化全功率段性能,提升储能系统在削峰填谷等变功率工况下的综合效率,并可与iSolarCloud平台联动实现智能模式切换。