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储能系统技术 储能系统 SiC器件 IGBT LLC谐振 ★ 5.0

一种面向大电流应用的高性价比混合Si/SiC双桥并联LLC谐振变换器

A Cost-Effective Hybrid Si/SiC Dual Bridge Parallel LLC Resonant Converter for High-Current Application

作者 Zipeng Ke · Jun Wang · Bo Hu · Chao Zhang · Zishun Peng · Yuxing Dai
期刊 IEEE Journal of Emerging and Selected Topics in Power Electronics
出版日期 2025年4月
技术分类 储能系统技术
技术标签 储能系统 SiC器件 IGBT LLC谐振
相关度评分 ★★★★★ 5.0 / 5.0
关键词 Si/SiC混合DBP LLC谐振变换器 成本降低 开关损耗 拓扑重构 功率损耗
语言:

中文摘要

基于SiC的双桥并联LLC谐振变换器具有低电流应力和高效率的优点,但成本较高。本文提出一种低成本混合Si/SiC双桥并联LLC变换器,由大电流低成本Si IGBT桥臂与小电流SiC MOSFET桥臂构成,显著降低系统成本。得益于Si IGBT桥臂的软开关特性,该混合结构在开关损耗方面可媲美全SiC设计。同时,通过拓扑重构减少了谐振元件数量,进一步降低损耗与成本。实验研制了6 kW样机,结果表明,在高输出功率下总损耗相当,而开关器件成本降低51.7%,谐振元件成本降低22.9%,总体成本降低31.6%。

English Abstract

The SiC-based dual bridge paralleled (DBP) LLC resonant converter offers advantages of low current stress and high efficiency but suffers from high costs. In this article, a cost-effective hybrid Si/SiC DBP LLC resonant converter is proposed, which consists of a high-current low-cost Si IGBTs bridge arm and a low-current SiC MOSFETs bridge arm, obtaining significant cost reduction. Benefiting the soft-switching operation of the Si IGBTs bridge arm, the proposed hybrid Si/SiC DBP LLC converter can achieve comparable switching losses with full-SiC MOSFETs design. Meanwhile, fewer resonant tanks are required benefiting from the topology reconstruction of the proposed converter, in comparison to the prior-art design of DBP LLC resonant converter, further reducing costs and power loss. A 6-kW prototype of the hybrid DBP LLC resonant converter, utilizing both Si IGBTs and SiC MOSFETs, is constructed as a case study to validate the proposed approach. Compared to the prior-art full-SiC DBP LLC converter, the proposed hybrid Si/SiC LLC converter achieves comparable total power loss under high output power while offering 51.7% switching device cost, 22.9% resonant components cost, and 31.6% total cost reductions.
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SunView 深度解读

该混合Si/SiC双桥并联LLC技术对阳光电源储能与充电产品具有重要应用价值。在ST系列储能变流器的DC/DC隔离级,可采用此混合方案替代全SiC设计,在保持高效率的同时降低31.6%成本,显著提升PowerTitan大型储能系统的性价比。对于大电流充电桩(如液冷超充),该拓扑的低电流应力特性与谐振元件精简设计可提高功率密度。技术关键在于Si IGBT桥臂的软开关实现与SiC桥臂的协同控制,建议结合阳光现有功率模块封装技术,在6kW以上大功率DC/DC模块中验证应用,平衡成本与性能,增强市场竞争力。