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采用集成变压器的三有源桥变换器电压平衡方法
Voltage Balancing for Triple-Active-Bridge Converter Using Integrated Transformer
| 作者 | Seunghoon Lee · Honnyong Cha · Dong-Choon Lee |
| 期刊 | IEEE Journal of Emerging and Selected Topics in Power Electronics |
| 出版日期 | 2025年2月 |
| 技术分类 | 储能系统技术 |
| 技术标签 | 储能系统 |
| 相关度评分 | ★★★★★ 5.0 / 5.0 |
| 关键词 | 双极直流配电 三有源桥变换器 电压平衡集成变压器 输出电压平衡 功率密度 |
语言:
中文摘要
相较于单极式结构,双极式直流配电具有诸多优势,三有源桥(TAB)变换器因其双输出结构成为其实现的常用拓扑。然而,负载不对称易导致输出电压失衡。本文提出一种电压平衡型集成变压器,在无需额外均衡电路或专用控制策略的前提下,实现TAB变换器的输出电压自动平衡。通过将传统TAB中的高频变压器与两个外置电感集成于单一磁性结构中,显著提升了磁性元件的功率密度。实验基于4 kW样机在严重不平衡负载下验证,输出电压不平衡度由传统方案的80%降至1.6%以下,磁性元件功率密度提升35%(7.9–10.7 kW/L),总损耗降低19%。
English Abstract
The bipolar dc distribution has many advantages compared with the unipolar type. The triple-active-bridge (TAB) converter is a popular topology for the implementation of bipolar dc distribution due to its dual-output structure. However, the unbalanced output voltages caused by the asymmetric load condition is a big issue. This article proposes a voltage balancing integrated transformer to achieve the output voltage balancing in the TAB converter without requiring any additional balancer circuits or dedicated control schemes. In this article, the high-frequency transformer and two external inductors in the conventional TAB converter are merged into a single magnetic structure. As a result, the desired voltage balancing is automatically achieved and the power density of magnetic components in the converter can be increased. The voltage balancing performance of the proposed integrated transformer was tested with a 4-kW experimental prototype under severely unbalanced load conditions, and the imbalance of the output voltages is reduced to less than 1.6% where the conventional TAB converter shows 80% unbalanced results. In addition, the power density of magnetic components increased by 35% (7.9–10.7 kW/L) and the total loss of magnetic components is reduced by 19%.
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SunView 深度解读
该集成变压器电压平衡技术对阳光电源ST系列储能变流器和PowerTitan大型储能系统具有重要应用价值。双极式直流配电架构在储能系统中可提升系统可靠性和灵活性,但传统TAB变换器在不对称负载下存在电压失衡问题。该技术通过磁集成方案实现自动电压平衡,无需额外均衡电路,可直接应用于储能PCS的DC/DC变换级,特别适合多端口储能系统和直流微网场景。磁性元件功率密度提升35%、损耗降低19%的性能改进,可显著提升阳光电源储能产品的系统集成度和转换效率,降低BOM成本,增强市场竞争力。该技术也可拓展至车载OBC等多输出应用场景。