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多工业电解槽在可再生能源制氢系统中的调度:一种协调的有功-无功功率管理方法
Scheduling Multiple Industrial Electrolyzers in Renewable P2H Systems: A Coordinated Active-Reactive Power Management Method
| 作者 | Yangjun Zeng · Yiwei Qiu · Jie Zhu · Shi Chen · Buxiang Zhou · Jiarong Li |
| 期刊 | IEEE Transactions on Sustainable Energy |
| 出版日期 | 2024年8月 |
| 技术分类 | 储能系统技术 |
| 技术标签 | 储能系统 工商业光伏 地面光伏电站 |
| 相关度评分 | ★★★★★ 5.0 / 5.0 |
| 关键词 | 可再生电力制氢 电解槽 有功无功管理 混合整数二阶锥规划 氢气产量 |
语言:
中文摘要
大规模可再生能源制氢(ReP2H)系统通常包含多个由晶闸管整流器(TR)供电的电解槽(ELZ),其有功与无功负荷呈非线性且不可解耦的关系。多台ELZ的启停与负荷分配影响能量转换效率及电网功率流动,不当调度可能导致无功过载,引发电压越限与网损增加。本文首先分析ELZ能效与无功负荷间的权衡关系,进而提出一种联合有功-无功功率管理方法,通过协调ELZ、可再生能源、储能与无功补偿装置的运行,提升系统整体效益。采用混合整数二阶锥规划(MISOCP)建模,并设计分解算法以适用于大规模系统。基于中国内蒙古风光数据的算例表明,该方法最高可使产氢量提升2.49%,网损降低3.12%。文中还简要探讨了ReP2H系统的最优无功资源配置。
English Abstract
Utility-scale renewable power-to-hydrogen (ReP2H) systems typically consist of multiple electrolyzers (ELZs), many of which are powered by thyristor rectifiers (TRs). A TR-powered ELZ has a nonlinear and nondecouplable relation between its active and reactive loads. The on-off switching and load allocation across multiple ELZs impact the efficiency of P2H energy conversion and the active and reactive power flows in the electrical network. Improper scheduling may result in an excessive reactive load from the hydrogen plant, causing voltage violations and increased network losses, which compromise both safety and profitability. To address these issues, this paper first explores the tradeoffs between the energy efficiency and reactive loads of ELZs. Then, we propose a joint active-reactive power management method to coordinate the loads and thermal properties of the ELZs, renewables, energy storage, and var compensation to improve the overall productivity and profitability. Mixed-integer second-order cone programming (MISOCP) is established to achieve these goals, and a decomposition algorithm enables its applicability in large-scale systems. Case studies show that the proposed method, at best, increases the hydrogen yield by 2.49% while reducing network losses by 3.12% compared to the state-of-the-art strategies based on wind and solar power data from Inner Mongolia, China. The optimal var resource configuration for ReP2H systems is also briefly discussed.
S
SunView 深度解读
该协调有功-无功功率管理技术对阳光电源光储制氢系统集成方案具有重要应用价值。研究中的MISOCP优化算法可直接应用于PowerTitan储能系统与SG系列光伏逆变器的协调控制,通过ST储能变流器的四象限运行能力提供动态无功补偿,解决电解槽晶闸管整流器引发的无功过载问题。该方法可集成至iSolarCloud平台实现多电解槽启停优化与负荷分配,提升可再生能源制氢系统的能量转换效率2.49%,降低网损3.12%。特别适用于阳光电源在内蒙古等风光资源丰富地区的大型绿氢项目,为光储氢一体化解决方案提供先进的能量管理策略,增强系统经济性与电网友好性。