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电动汽车驱动 充电桩 DC-DC变换器 双向DC-DC ★ 5.0

一种用于电动交通应用中直流快充站的宽输出电压范围双向两阶段DC-DC变换器

A Two-Stage Bidirectional DC–DC Converter With a Wide Output Voltage Range for DC Fast Charging Stations in E-Mobility Applications

作者 Rajendra Prasad Upputuri · Bidyadhar Subudhi
期刊 IEEE Journal of Emerging and Selected Topics in Power Electronics
出版日期 2024年12月
技术分类 电动汽车驱动
技术标签 充电桩 DC-DC变换器 双向DC-DC
相关度评分 ★★★★★ 5.0 / 5.0
关键词 电动汽车 快速充电器 两级双向DC-DC转换器 宽电压范围 高效率
语言:

中文摘要

为缩短电动汽车充电时间并降低能量损耗,车载电池电压不断提升至800 V乃至1.5 kV,对快充系统设计提出新挑战。本文提出一种新型双向两阶段DC-DC变换器,具备极宽输出电压范围。前级采用双变压器可重构三桥臂变换器(DTR3LC),后级为交错式可重构降压变换器(IRBC),并通过四个辅助开关实现串并联切换,结合IRBC实现宽范围高效稳压调节。实验样机在80 V输入下实现15–150 V输出,最大效率达95.32%。

English Abstract

The drive to reduce the charging time and energy loss in electric vehicles (EVs) has led to increasing battery voltages to 800 V, 1000 V, 1.25 kV, and 1.5 kV, posing new challenges for designing EV fast chargers, especially for heavy-duty EVs. Two-stage converters, comprising isolated and regulated dc-dc stages, are emerging for their superior performance. This article proposes a novel two-stage bidirectional dc-dc converter with an extremely wide operating voltage range. The design features a dual-transformer reconfigurable three-leg converter (DTR3LC) in the first stage, an interleaved reconfigurable buck converter (IRBC) in the second stage, and four auxiliary switches for reconfiguration. These switches enable the secondary side of the DTR3LC to switch between parallel and series connections, which are then regulated by the IRBC, resulting in high efficiency and low current ripple across a wide voltage range. A 1-kW scaled-down laboratory experimental setup was developed and tested with an input voltage of 80 V to charge EV batteries ranging from 15 to 150 V, achieving a maximum efficiency of 95.32% at 150 V.
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SunView 深度解读

该双向两阶段DC-DC变换器技术对阳光电源充电桩产品线具有重要应用价值。其DTR3LC+IRBC架构通过串并联重构实现15-150V宽范围输出,可直接应对400V/800V/1500V多电压平台电动汽车的快充需求,避免多套硬件冗余。95.32%的高效率与阳光电源SiC器件应用经验结合,可提升充电桩能效等级。该拓扑的双向特性支持V2G功能,可与ST储能系统协同实现削峰填谷。建议将可重构技术融入下一代直流快充模块设计,通过拓扑动态切换替代传统多变比变压器方案,降低成本并提升功率密度,增强阳光电源在超快充市场的竞争力。