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储能系统技术 储能系统 DC-DC变换器 PFC整流 ★ 5.0

具有低开关电压应力的单级双反激PFC变换器

Single-Stage Two-Flyback PFC Converter With Low Voltage Stress on a Switch

作者 Jae-Won Yang · Hyun-Lark Do
期刊 IEEE Transactions on Industrial Electronics
出版日期 2024年7月
技术分类 储能系统技术
技术标签 储能系统 DC-DC变换器 PFC整流
相关度评分 ★★★★★ 5.0 / 5.0
关键词 变换器 功率因数 开关电压应力 开关损耗 效率
语言:

中文摘要

本文提出一种由两个反激式AC-DC/DC-DC模块构成的单级功率因数校正(PFC)变换器。第一个反激AC-DC模块工作于断续导电模式(DCM),使输入电流与电网电压同相,实现高功率因数;部分能量经耦合电感直接传递至负载,其余储存在两个直流母线电容中。下一周期中,第二级反激DC-DC模块将电容能量传输至负载。通过引入两个直流阻断二极管,使直流母线电压低于输入电压峰值,开关电压应力被钳位在两倍直流母线电压。第二级工作于临界导电模式(CRM),以降低开关损耗。相比传统单级升压-反激PFC变换器,该拓扑具备更高效率与功率因数。实验基于一台48 V、100 W的样机验证了理论分析与设计方法的有效性。

English Abstract

The proposed converter consists of two flyback ac–dc/dc–dc modules. Some power stored in a first coupled inductor is directly transferred to a load and the other is stored in two dc-link capacitors. Since a flyback ac–dc module operates in discontinuous conduction mode (DCM), line input current is in phase with the instantaneous line voltage and high power factor (PF) is achieved. In a next period, the energy stored in two capacitors is moved to a load by means of a second flyback dc–dc module. To achieve low voltage stress on a switch, two dc-blocking diodes are added so that the dc-link voltage is lower than a peak input voltage. The voltage stress on a switch is clamped to the double dc-link voltage. For a reduction of switching loss on a switch, the first flyback ac–dc module operates in DCM and the second flyback dc–dc module operates in critical conduction mode (CRM). The proposed converter features higher efficiency and higher PF than a conventional single-stage boost-flyback PFC converter. The performance of the proposed converter is verified from a 48 V and 100 W prototype, including its theoretical analyses and design procedures.
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SunView 深度解读

该单级双反激PFC拓扑对阳光电源车载OBC充电机和小功率辅助电源模块具有直接应用价值。其核心创新——通过DC阻断二极管将开关电压应力钳位至2倍母线电压,可显著降低功率器件成本并提升可靠性,特别适用于48V低压储能系统的AC-DC前端整流模块。DCM+CRM混合工作模式实现高PF值(>0.99)的同时降低开关损耗,可借鉴应用于ST系列储能变流器的辅助电源设计。该拓扑的能量分流传输机制(部分经耦合电感直传、部分经电容缓冲)为PowerTitan大型储能系统的模块化AC-DC整流单元提供了新的轻量化设计思路,有助于提升功率密度并降低母线电容应力。