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光伏发电技术 储能系统 ★ 5.0

基于预测的风-光互补电解制氢系统的设计与优化调度

Design and optimal scheduling of a forecasting-based wind-and-photovoltaic complementary electrolytic hydrogen production system

作者 Weichao Dong · Hexu Sun · Zheng Li · Huifang Yang
期刊 Applied Energy
出版日期 2025年1月
卷/期 第 392 卷
技术分类 光伏发电技术
技术标签 储能系统
相关度评分 ★★★★★ 5.0 / 5.0
关键词 A complementary wind-PV off-grid power generation system is established.
语言:

中文摘要

摘要 氢能可有效缓解能源短缺并减少环境污染。本文首次设计了一个完整的风能与光伏(PV)互补制氢系统,包括高效的发电系统模型、精确的预测模型、优良的优化调度策略以及高效的催化剂。该离网型互补发电系统在直流母线上实现。提出了一种混合预测模型,结合长短期记忆网络(LSTM)、分位数回归(QR)和正则藤copula方法。LSTM与QR相结合可获得边缘概率密度函数(PDF)。利用正则藤copula建立风能与光伏能源之间的相关性,并将边缘PDF与其相关性结构结合,实现对风能和光伏出力的联合预测。提出一种基于堆叠多层去噪自编码器(SMLDAE)、非支配排序遗传算法II(NSGA-II)和深度强化学习(DRL)的多目标优化调度策略。其中,SMLDAE用于构建代理模型,NSGA-II用于生成帕累托前沿解集,DRL用于从中选择最优解。合成了一种三维六方结构的Co-Mn-S/Ni双功能催化剂,以降低制氢过程中的能耗。本研究是首个同时考虑多种能源间依赖关系、采用DRL确定最优调度方案,并合成具有高催化性能的钴-锰硫化物复合材料用于绿色制氢的研究。通过一个100 MW级风-光互补制氢项目验证了本系统的优越性,可使可再生氢气的综合生产成本降至约3.1美元/千克,实现了低成本、大规模、高效率的可再生氢气生产。

English Abstract

Abstract Hydrogen can effectively address energy shortages while reducing environmental pollution. Herein, for the first time, a complete complementary wind and photovoltaic (PV) hydrogen production system is designed, including an efficient power generation system model, accurate forecasting model, excellent optimal scheduling strategy, and effective catalyst. The off-grid complementary power generation system was implemented on a DC bus. A hybrid forecasting model, including a long short-term network (LSTM), quantile regression (QR), and regular vine copula, is developed. LSTM combined with QR can obtain the margin probability density function (PDF). The dependency of wind and PV sources is established using a regular vine copula, and the margin PDF is combined with the dependency to forecast based on wind and PV sources. A multi-objective optimal scheduling strategy, based on a stacked multilevel denoising autoencoder (SMLDAE), non-dominated sorting genetic algorithm-II (NSGA-II), and deep reinforcement learning (DRL), is proposed. SMLDAE, NSGA-II, and DRL are used to develop a surrogate model, establish the Pareto frontier set, and select the optimal solution, respectively. A three-dimensional hexagonal Co-Mn-S/Ni bifunctional catalyst was synthesized to reduce the power consumption of hydrogen production. This is the first study to consider the dependencies of different energy sources, use DRL to determine an optimal solution, and synthesize cobalt‑manganese sulfide composites with high catalytic performance in green hydrogen production. A 100 MW complementary wind and PV hydrogen production project demonstrates the superiority of our system. The total renewable hydrogen production cost is reduced to approximately $3.1/kg, enabling low-cost, large-scale, and highly efficient renewable hydrogen production.
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SunView 深度解读

该风光制氢系统对阳光电源ST系列储能变流器和SG光伏逆变器具有重要应用价值。文中直流母线离网架构可结合我司1500V系统和三电平拓扑技术,提升功率转换效率。LSTM-DRL多目标优化调度策略可集成至iSolarCloud平台,实现风光出力预测与氢储能协同控制。研究的3.1美元/kg制氢成本为PowerTitan储能系统拓展氢能应用场景提供依据,GFM控制技术可增强离网制氢系统稳定性,推动绿氢全产业链解决方案开发。