Optimization Operation Strategy for Shared Energy Storage and Regional Integrated Energy Systems Based on Multi-Level Game

Author:

Yang Yulong1,Chen Tao1,Yan Han1,Wang Jiaqi1,Yan Zhongwen1,Liu Weiyang1

Affiliation:

1. School of Electrical Engineering, Northeast Electric Power University, Jilin 132000, China

Abstract

Regional Integrated Energy Systems (RIESs) and Shared Energy Storage Systems (SESSs) have significant advantages in improving energy utilization efficiency. However, establishing a coordinated optimization strategy between RIESs and SESSs is an urgent problem to be solved. This paper constructs an operational framework for RIESs considering the participation of SESSs. It analyzes the game relationships between various entities based on the dual role of energy storage stations as both energy consumers and suppliers, and it establishes optimization models for each stakeholder. Finally, the improved Differential Evolution Algorithm (JADE) combined with the Gurobi solver is employed on the MATLAB 2021a platform to solve the cases, verifying that the proposed strategy can enhance the investment willingness of energy storage developers, balance the interests among the Integrated Energy Operator (IEO), Energy Storage Operator (ESO) and the user, and improve the overall economic efficiency of RIESs.

Funder

the Science and Technology Planning Project of Xinjiang Uygur Autonomous Region

Publisher

MDPI AG

Reference23 articles.

1. Key technologies and challenges of low-carbon integrated energy system planning for carbon emission peak and carbon neutrality;Zhang;Autom. Electr. Power Syst.,2022

2. Low-carbon optimal scheduling of a power system source-load considering coordination based on carbon emission flow theory;Chen;Power Syst. Prot. Control,2021

3. Optimal operation of shared energy storage and integrated energy microgrid based on leader-follower game theory;Shuai;Power Syst. Technol.,2023

4. Evolutionary game based competition strategy selection method for retail side of regional integrated energy market;Cao;Autom. Electr. Power Syst.,2023

5. Review on business model and pricing mechanism for shared energy storage;Yan;Autom. Electr. Power Syst.,2022

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