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Article

Research on a New Shared Energy Storage Market Mechanism Based on Wind Power Characteristics and Two-Way Sales

1
Development Division of State Grid Gansu Electric Power Company (Economic and Technological Research Institute), Lanzhou 730030, China
2
Marketing Division of State Grid Gansu Electric Power Company (Marketing Service Center, Metrology Center), Lanzhou 730030, China
3
Key Laboratory of Modern Power System Simulation and Control & Renewable Energy Technology, Ministry of Education, Northeast Electric Power University, Jilin 132012, China
*
Author to whom correspondence should be addressed.
Electronics 2025, 14(20), 4038; https://doi.org/10.3390/electronics14204038
Submission received: 18 September 2025 / Revised: 9 October 2025 / Accepted: 13 October 2025 / Published: 14 October 2025

Abstract

Against the backdrop of the world’s increasing reliance on renewable energy, the inherent intermittency and volatility of wind and solar energy pose significant challenges to the stability and economic benefits of the power system. In regions rich in renewable energy resources such as Gansu Province, due to low operational efficiency and underdeveloped market mechanisms, the potential of new energy storage systems is often not fully exploited. This paper proposes an integrated shared energy storage model designed to suppress wind power fluctuations and a two-way market trading mechanism designed to maximize social welfare to solve these problems. Firstly, a hybrid energy storage system combining electrochemical- and hydrogen-based energy storage is constructed. The modular coordination strategy is adopted to dynamically allocate power capacity, and the wind energy fluctuation suppression technology is proposed to achieve fluctuation suppression at multiple time scales. Secondly, a combined dual bidding mechanism is introduced, allowing for combined bidding across time periods and resource types, to better capture user preferences and enhance market flexibility. The model is represented as a mixed-integer nonlinear programming problem aimed at maximizing social welfare, and then transformed into a linear equivalence problem to enhance the traceability of the calculation. The branch and bound algorithm is adopted to solve this problem. Finally, the simulation results based on the bidding data of a certain area enhanced the participation of participants and improved the fairness of the market and the overall social welfare. This system effectively enhances the grid-friendliness of renewable energy grid connection and provides a scalable and replicable framework for highly renewable energy systems.
Keywords: new energy storage system; market trading mechanism; hydrogen storage; energy optimization new energy storage system; market trading mechanism; hydrogen storage; energy optimization

Share and Cite

MDPI and ACS Style

Chai, Y.; Hao, Q.; Wang, C.; Tian, Y.; Peng, J.; Sun, P.; Yang, M. Research on a New Shared Energy Storage Market Mechanism Based on Wind Power Characteristics and Two-Way Sales. Electronics 2025, 14, 4038. https://doi.org/10.3390/electronics14204038

AMA Style

Chai Y, Hao Q, Wang C, Tian Y, Peng J, Sun P, Yang M. Research on a New Shared Energy Storage Market Mechanism Based on Wind Power Characteristics and Two-Way Sales. Electronics. 2025; 14(20):4038. https://doi.org/10.3390/electronics14204038

Chicago/Turabian Style

Chai, Yi, Qinghai Hao, Ce Wang, Yunfei Tian, Jing Peng, Peng Sun, and Mao Yang. 2025. "Research on a New Shared Energy Storage Market Mechanism Based on Wind Power Characteristics and Two-Way Sales" Electronics 14, no. 20: 4038. https://doi.org/10.3390/electronics14204038

APA Style

Chai, Y., Hao, Q., Wang, C., Tian, Y., Peng, J., Sun, P., & Yang, M. (2025). Research on a New Shared Energy Storage Market Mechanism Based on Wind Power Characteristics and Two-Way Sales. Electronics, 14(20), 4038. https://doi.org/10.3390/electronics14204038

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