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晶闸管整流器在高功率氢电解槽中的建模与优化 sizing
Modeling and Optimal Sizing of Thyristor Rectifiers for High-Power Hydrogen Electrolyzers
| 作者 | Álvaro Iribarren · Ernesto L. Barrios · Pablo Sanchis · Alfredo Ursúa |
| 期刊 | IEEE Journal of Emerging and Selected Topics in Power Electronics |
| 出版日期 | 2025年5月 |
| 技术分类 | 氢能与燃料电池 |
| 技术标签 | 工商业光伏 |
| 相关度评分 | ★★★★★ 5.0 / 5.0 |
| 关键词 | 晶闸管整流器 电解槽 直流侧电感 解析模型 最优尺寸设计 |
语言:
中文摘要
晶闸管整流器是当前高功率电解槽最常见的供电方案,通常需配置直流侧电感,显著增加系统成本。本文提出一种无需直流侧电感、仅依赖交流侧滤波电感的新型设计方法,并针对电解槽近似恒压负载特性,建立了适用于6脉波和12脉波晶闸管整流器的新型解析模型。该模型可准确确定给定触发角下的工作点,避免传统模型因假设感性或恒流负载而导致的系统误设计问题。通过仿真与实验验证了模型精度,并成功应用于5.5 MW电解槽用12脉波整流器的优化设计,证明其在工业级电解制氢系统中的适用性与优势。
English Abstract
Thyristor rectifiers are currently the most common solution for supplying high-power electrolyzers. These rectifiers typically include a dc inductance, which significantly increases system costs. However, this inductance can be avoided by relying solely on ac-side inductances, required for grid current harmonic filtering, although this approach introduces specific challenges. Traditional analytical models of thyristor rectifiers are unable to determine the electrolyzer operating point for a given firing angle and may lead to incorrect system sizing, ultimately preventing the converter from delivering nominal power. This limitation arises from the fact that existing models are formulated for inductive or constant-current loads, whereas electrolyzers exhibit electrical behavior closer to constant-voltage loads. In this paper, a novel analytical model of 6- and 12-pulse thyristor rectifiers with constant-voltage load is developed. The model enables the analysis and optimal sizing of thyristor rectifiers directly connected to electrolyzers without a dc-side inductance. Its accuracy has been validated through both simulations and experimentally using a laboratory-scale prototype. Furthermore, the model has been applied to optimally size a 12-pulse rectifier supplying a 5.5 MW electrolyzer, demonstrating its suitability for the design of thyristor rectifier systems in industrial-scale electrolysis applications and highlighting its advantages over traditional approaches.
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SunView 深度解读
该晶闸管整流器优化设计技术对阳光电源氢能电源系统产品线具有重要应用价值。研究提出的无直流侧电感设计方案可直接应用于公司大功率电解制氢电源系统,显著降低系统成本和体积。针对恒压负载特性的解析模型突破了传统恒流假设局限,可指导阳光电源开发更精准的电解槽专用整流器控制算法。该技术与公司在ST储能变流器上积累的多电平拓扑、功率器件应用经验高度协同,可快速迁移至MW级氢能电源产品。12脉波整流器优化设计方法为公司布局绿电制氢一体化解决方案(光伏+储能+制氢)提供了关键的电力电子接口技术支撑,有助于构建完整的新能源生态链。