← 返回
一种三电平伪图腾柱PFC整流器家族及其拓扑推导方法
A Family of Three-Level Pseudo Totem-Pole PFC Rectifiers with Derivation Methods
| 作者 | Hui Ma · Jiaxing Yang · Liping Fan · Kun Xiang · Huiqun Liu · Lei Xi |
| 期刊 | IEEE Journal of Emerging and Selected Topics in Power Electronics |
| 出版日期 | 2025年5月 |
| 技术分类 | 储能系统技术 |
| 技术标签 | 储能系统 PFC整流 三电平 |
| 相关度评分 | ★★★★★ 5.0 / 5.0 |
| 关键词 | 功率因数校正 拓扑推导方法 三电平PTP整流器 工作原理分析 调制方法 |
语言:
中文摘要
本文提出了四种功率因数校正(PFC)整流器拓扑推导方法:级联推导、等效工作模式推导、镜像变换和冗余变换,并以伪图腾柱(PTP)PFC为例详细阐述了各推导过程。基于此,提出了一类新型三电平PFC整流器家族,称为三电平PTP整流器(TLPR),共包含五个电路。文中详细分析了TLPR-I的工作原理,总结了其余四种电路的开关脉冲与关键仿真波形,并设计了适用于该类拓扑的三电平调制方法。此外,对比了五种电路的开关器件数量、元件应力、性能及损耗。最后,通过三台1kW样机实验验证了所提TLPR拓扑及推导方法的正确性。
English Abstract
This article introduces four power factor correction (PFC) rectifier topological derivation methods, which are the cascade derivation, the equivalent working-mode derivation, the mirror transformation and the redundancy transformation, re-spectively. Then, the four topological derivation methodologies are presented in detail and the pseudo totem-pole (PTP) PFC is selected as typical example to explain derivation processes. Con-sequently, a new family of PFC rectifiers with three-level capabil-ity is proposed in this paper, called as three-level PTP rectifier (TLPR) including five circuits. Moreover, a comprehensive anal-ysis of the operation principle for the TLPR-I is presented in detail, and the other four circuits’ switching-pulse of the opera-tion modes and the key simulation waveforms are summarized and given. In addition, a three-level modulation method is de-signed for this kind of TLPR topology. Furthermore, the number of switch devices, component stress, performance comparison and loss of the five circuits are provided. Finally, three 1kW pro-totypes are built and tested to validate the theoretical analysis of the proposed TLPR topology and derivation methods.
S
SunView 深度解读
该三电平PFC整流器拓扑推导方法对阳光电源多条产品线具有重要应用价值。在ST系列储能变流器中,三电平PTP拓扑可降低开关应力、提升效率,适配1500V高压储能系统;在车载OBC充电机领域,高功率密度的三电平PFC方案可优化充电效率与EMI性能;在充电桩AC-DC整流环节,该拓扑族可实现更低THD与更高功率因数。文中提出的四种拓扑推导方法(级联、等效工作模式、镜像与冗余变换)为阳光电源功率模块设计提供系统化创新思路,结合SiC器件应用可进一步提升产品竞争力。三电平调制策略与损耗对比分析可直接指导PowerTitan等大型储能系统的拓扑优化选型。