XU Weiwei, SUN Yihui. Research on the optimization and control of source grid load storage system with the participation of supercapacitors energy storage technology[J]. Energy Storage Science and Technology, 2026, 15(6): 2281-2283.
XU Weiwei, SUN Yihui. Research on the optimization and control of source grid load storage system with the participation of supercapacitors energy storage technology[J]. Energy Storage Science and Technology, 2026, 15(6): 2281-2283.DOI: 10.19799/j.cnki.2095-4239.2026.0430.
Research on the optimization and control of source grid load storage system with the participation of supercapacitors energy storage technology
The global energy transition process is accelerating
and the problem of power system fluctuations caused by the high proportion of renewable energy connected to the grid is constantly intensifying. The source grid load storage system has become the key to ensuring the stable operation of the power system. Super capacitor energy storage technology plays an important role in power system control due to its advantages such as charging and discharging rate and cycle life
and is an important support for optimizing the control of source grid load storage systems. This study summarizes the optimization control strategies of supercapacitor energy storage technology and source grid load storage systems. Firstly
the research and development process of supercapacitor energy storage technology at home and abroad is summarized. Then
the structural division of source grid load storage systems is elaborated. Finally
the role of supercapacitor energy storage technology in power balance regulation
system frequency regulation
and source load collaborative optimization in the operation of source grid load storage systems is analyzed in depth
providing reference for the upgrade of supercapacitor energy storage technology in integrated control of source grid load storage.
WANG M Y, LI S Y, DONG H, et al. Application of graphene matrix composites in supercapacitors[J]. Modern Chemical Industry, 2021, 41(S1): 54-57.
邱金辉. 铝离子电池正极材料及离子液体电解质的研究[D]. 大连: 大连交通大学, 2025.QIU J H. Research on cathode materials and ionic liquid electrolytes for aluminum-ion batteries[D]. Dalian: Dalian Jiaotong University, 2025.
WANG F F, ZHANG S X, SONG Y, et al. Collaborative planning method for distribution network source-network-load-storage considering multi-agent mixed game theory[J]. Southern Power System Technology, 2025(4): 78-92.
Application and research progress of energy storage technology in power systems under the dual carbon background
Research on grid risk assessment model and algorithm considering energy storage access
Research progress in China's energy storage technology in 2025
Exploration and practice of an elite innovative graduate training model in the field of green energy based on the triadic integration of ‘Experimentation-Simulation-Algorithms’
Numerical simulation study on reaction beds with hierarchically gradient porosity for calcium-based thermal energy storage
Related Author
DAI Yuhan
LIU Chun
ZHOU Peng
ZHOU Junpeng
XIANG Siyu
XU Caiying
TANG Yuzhen
LI Qiuyu
Related Institution
State Grid Sichuan Electric Power Company
Leshan Power Supply Company of State Grid Sichuan Electric Power Company
Sichuan SGIT Technology Co., Ltd.
Sichuan Jianengjia Power Group Co., LTD.
State Grid Sichuan Electric Power Company Electric Power Science Research Institute