电力系统自动化2026,Vol.50Issue(12):44-54,11.DOI:10.7500/AEPS20250626005
含混合储能的综合能源系统协同优化与低碳策略
Collaborative Optimization and Low-carbon Strategies for Integrated Energy Systems with Hybrid Energy Storage
摘要
Abstract
Multi-energy coupling and efficient conversion can improve the utilization efficiency of various energy sources.This paper proposes an integrated energy system consisting of a reversible solid oxide cell(RSOC),a hybrid energy storage system,and combined cooling,heating and power(CCHP).Firstly,electric,heat and cold energy storage are introduced into the system as short-term energy storage units,and RSOC and CCHP are combined with hydrogen/methane storage tanks to realize long-term energy storage.Secondly,the output characteristics of renewable energy and load characteristics in different seasons are analyzed,and the operation strategy of the energy storage system is optimized.Then,technical and economic analysis is carried out for five typical scenarios,and the operation influences of the hybrid energy storage system,CCHP,and RSOC are discussed.Finally,the impact of carbon trading mechanism parameters on the planned capacity of energy storage and system cost is investigated.The simulation results show that the proposed model achieves high installed capacity of renewable energy and a lower energy abandonment rate,with both low-carbon performance and economic efficiency.关键词
储能/可逆固体氧化物电池/冷热电三联供/优化配置/碳交易Key words
energy storage/reversible solid oxide cell(RSOC)/combined cooling,heating and power(CCHP)/optimal allocation/carbon trading引用本文复制引用
李儒欢,周峻,吴锴,高原,付磊,王俊波..含混合储能的综合能源系统协同优化与低碳策略[J].电力系统自动化,2026,50(12):44-54,11.基金项目
国家自然科学基金资助项目(52377212) (52377212)
陕西省重点研发计划资助项目(2023-YBGY-057). This work is supported by National Natural Science Foundation of China(No.52377212)and Key R&D Program of Shaanxi Province(No.2023-YBGY-057). (2023-YBGY-057)