本文已被:浏览 506次 下载 443次
投稿时间:2024-03-27
投稿时间:2024-03-27
中文摘要: 为促进新能源消纳、减少碳排放、提高园区集群的经济性和灵活性,提出了一种基于移动储氢的电氢协同调度策略。首先,考虑氢能的高能量密度特性与空间转移特性,提出了基于移动储氢的园区集群结构;其次,建立了电-氢网络模型,基于时空网络建立了运氢车路径模型;然后,建立了电氢协同经济调度模型;最后,利用MATLAB R2018a软件进行算例仿真分析。结果表明,基于移动储氢的园区集群电氢协同调度策略有效提升了集群运行的经济性和灵活性,提高了新能源消纳率,降低了碳排放量。
Abstract:In order to promote new energy consumption,reduce carbon emissions,and improve the economy and flexibility of park clusters,an electric-hydrogen cooperative scheduling strategy based on mobile hydrogen storage is proposed. First,considering the high energy density and spatial transfer characteristics of hydrogen energy,an electric-hydrogen coupled park cluster structure is proposed;second,an electric-hydrogen network model is established,and for the mobile hydrogen storage link,which is the key link of the coupling,the displacement constraints of the hydrogen trucks based on the spatio-temporal network model are constructed;then,an electric-hydrogen coordinated economic scheduling model is established; and finally, an arithmetic example simulation is performed to analyze the results using MATLAB R2018a software. The results show that the electric-hydrogen cooperative scheduling of park clusters based on mobile hydrogen storage effectively improves the economy and flexibility of cluster operation, increases the rate of new energy consumption,and reduces carbon emissions.
keywords: high percentage of new energy electric-hydrogen coupling mobile hydrogen storage cooperative scheduling
文章编号:20244007 中图分类号:TM734 文献标志码:
基金项目:
作者 | 单位 | |
王馨仪 | 上海电力大学 电气工程学院 | |
孙欣 | 上海电力大学 电气工程学院 | sunxin@shiep.edu.cn |
引用文本:
王馨仪,孙欣.基于移动储氢的园区集群电氢协同调度[J].上海电力大学学报,2024,40(4):340-346,370.
WANG Xinyi,SUN Xin.Electric-Hydrogen Cooperative Scheduling for Park Clusters Based on Mobile Hydrogen Storage[J].Journal of Shanghai University of Electric Power,2024,40(4):340-346,370.
王馨仪,孙欣.基于移动储氢的园区集群电氢协同调度[J].上海电力大学学报,2024,40(4):340-346,370.
WANG Xinyi,SUN Xin.Electric-Hydrogen Cooperative Scheduling for Park Clusters Based on Mobile Hydrogen Storage[J].Journal of Shanghai University of Electric Power,2024,40(4):340-346,370.