Source-load-storage Low-carbon Economic Dispatching Considering Coordinated Operation of Carbon Capture Unit and Hydrogen Energy Storage System

被引:0
作者
Cui Y. [1 ]
Guan Y. [1 ]
Li J. [2 ]
Zhao Y. [1 ]
Tang Y. [3 ]
Zhong W. [4 ]
机构
[1] Key Laboratory of Modern Power System Simulation and Control & Renewable Energy Technology, Ministry of Education (Northeast Electric Power University), Jilin Province, Jilin
[2] State Grid Henan Electric Power Company Luohe Power Supply Company, Henan Province, Luohe
[3] CR Power Energy Science and Technology Co., Ltd., Henan Province, Zhengzhou
[4] China Electric Power Research Institute, Haidian District, Beijing
来源
Dianwang Jishu/Power System Technology | 2024年 / 48卷 / 06期
基金
中国国家自然科学基金;
关键词
carbon capture; hydrogen energy storage system; low-carbon economic dispatching; rotary reserve; uncertainty;
D O I
10.13335/j.1000-3673.pst.2023.1163
中图分类号
学科分类号
摘要
In order to deal with the difficulty of new energy consumption and the lack of system regulation and control capacity in the process of new power system construction, this paper proposes a low-carbon economic dispatching strategy of source-load-storage considering the coordinated operation of a carbon capture unit and a hydrogen energy storage system. Firstly, the operation mechanism of the three sides of source-load-storage is analyzed, and the flexibility of power system scheduling is improved by making full use of the carbon capture units, the hydrogen energy storage systems and the demand response. Secondly, the structure framework of source-grid-load coordinated operation is constructed, and the coordinated operation characteristics of a carbon capture unit and a hydrogen energy storage system are studied in view of the shortcomings in the operation of the carbon capture unit and the hydrogen energy storage system under the demands of the spinning reserve. Finally, aiming at the optimal comprehensive cost of the system, a low-carbon economic dispatching model of source-load-storage coordinated operation of carbon capture units and hydrogen energy storage systems is established. The fuzzy membership function is used to describe the system uncertainty and determine the system spinning reserve demands. The example verification shows that the model proposed in this paper is able to significantly improve the new energy consumption level of the system under the premise of taking into account the economy and low carbon of the system operation. © 2024 Power System Technology Press. All rights reserved.
引用
收藏
页码:2307 / 2316
页数:9
相关论文
共 23 条
[1]  
KANG Chongqing, DU Ershun, GUO Hongye, Primary exploration of six essential factors in new power system[J], Power System Technology, 47, 5, pp. 1741-1750, (2023)
[2]  
CHEN Qixin, JI Zhen, KANG Chongqing, Analysis on relation between power generation and carbon emission of carbon capture power plant in different operation modes[J], Automation of Electric Power Systems, 36, 18, pp. 109-115, (2012)
[3]  
Yang CUI, ZENG Peng, HUI Xinxin, Low-carbon economic dispatch considering the integrated flexible operation mode of carbon capture power plant[J], Power System Technology, 45, 5, pp. 1877-1886, (2021)
[4]  
CHEN Dapeng, WANG Jian, JING Zhaoxia, Decision model of carbon capture power plant to provide reserve service under flexible operation[J], Automation of Electric Power Systems, 41, 12, pp. 138-145, (2017)
[5]  
LOU Suhua, Siyu LU, Yaowu WU, Optimizing spinning reserve requirement of power system with carbon capture plants[J], IEEE Transactions on Power Systems, 30, 2, pp. 1056-1063, (2015)
[6]  
WANG Shibo, KONG Lingguo, CAI Guowei, Current status,challenges , and prospects of key application technologies for hydrogen storage in power system[J/OL], Proceedings of the CSEE, pp. 1-24, (2023)
[7]  
XIAO Bai, LIU Jiankang, ZHANG Bo, Optimal configuration of grid-connected microgrid with hydrogen energy storage considering ladder-type carbon trading and demand response[J], Electric Power Automation Equipment, 43, 1, pp. 121-129, (2023)
[8]  
LI Na, LI Zhiyuan, WANG Nan, Exploration of development path of hydrogen storage peak shaving station[J], Energy of China, 43, 1, pp. 55-59, (2021)
[9]  
Yang SI, CHEN Laijun, MA Linrui, Optimal dispatching method of wind-hydrogen hybrid system considering heat balance of hydrogen energy storage[J], Electrical & Energy Management Technology, 2021, 11, pp. 15-21
[10]  
WANG Wenye, JIANG Fei, ZHANG Xinhe, Low-carbon and flexible dispatch of high-proportion wind-photovoltaic multi-energy system with comprehensive utilization of large-scale hydrogen energy [J/OL], Power System Technology, pp. 1-15, (2023)