Optimal design and application of energy storage system in Dongfushan island stand-alone microgrid

被引:0
作者
机构
[1] Zhejiang Electric Power Corporation Research Institute
来源
Zhao, B. (zhaobozju@163.com) | 1600年 / Automation of Electric Power Systems Press卷 / 37期
关键词
Energy storage system; Engineering application; Microgrid; Operation parameter; Optimal configuration; Technology selection;
D O I
10.7500/AEPS201208166
中图分类号
学科分类号
摘要
To solve the electricity and water consumption problems, a techno-economic research on wind-solar-diesel-storage isolated microgrid is made based on the engineering practice on Dongfushan Island. The paper focuses on the technology selection, optimal design and operation parameters optimization of the energy storage system in the Dongfushan stand-alone microgrid. By considering the technical, economic, security and maturity aspects, the option of improved valve-regulated lead-acid battery is chosen as the best solution for currently available technologies of energy storage. In the energy storage optimization configuration, multi-objective design is made with minimizing the operation time of diesel generator, maximizing the utilization of renewable energy, and maximizing the lifetime of the energy storage system as the optimization objectives. As for the selection of the energy storage system's operation parameters, by referring to the coordinated operation control strategy, the terminal voltage of battery banks is adopted as the standard to do the mode control, mode switch and storage system protection. The operation parameters are optimally selected to ensure that the microgrid operates orderly, efficiently and reliably. The actual operation analysis demonstrates the practicability and effectiveness of the research method. © 2013 State Grid Electric Power Research Institute Press.
引用
收藏
页码:161 / 167
页数:6
相关论文
共 16 条
[1]  
Wang K., You Y., Zhang Y., Energy management system of renewable stand-alone energy power generation system in an island, Automation of Electric Power Systems, 34, 14, pp. 13-17, (2010)
[2]  
Liang C., Duan X., Distributed generation and its impact on power system, Automation of Electric Power Systems, 25, 12, pp. 53-56, (2001)
[3]  
Dufo-Lopez R., Bernal-Agustin J.L., Multi-objective design of PV-wind-diesel-hydrogen-battery systems, Renewable Energy, 33, 12, pp. 2559-2572, (2008)
[4]  
Lu Z., Wang C., Min Y., Et al., Overview on microgrid research, Automation of Electric Power Systems, 31, 19, pp. 100-108, (2007)
[5]  
Li P., Zhang L., Wang W., Et al., Application and analysis of microgrid, Automation of Electric Power Systems, 33, 20, pp. 109-115, (2009)
[6]  
Chen W., Shi J., Ren L., Et al., Composite usage of multi-type energy storage technologies in microgrid, Automation of Electric Power Systems, 34, 1, pp. 112-115, (2010)
[7]  
Zhou L., Huang Y., Guo K., Et al., A survey of energy storage technology for microgrid, Power System Protection and Control, 39, 7, pp. 147-152, (2011)
[8]  
Komor P., Glassmir J., Electricity storage and renewables for island power - A guide for decision makers
[9]  
Vincent R., Yannick P., What type(s) of support schemes for storage in island power systems, Proceedings of the 10th International Conference on Applied Infrastructure Research, pp. 1076-1080, (2011)
[10]  
Sun Y., Kang L., Shi W., Et al., Study on sizing of batteries for distributed power system utilizing chance constrained programming, Journal of System Simulation, 17, 1, pp. 41-44, (2005)