基于稳定大联盟的交互式多能源微网集群协同运行策略
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1.强电磁技术全国重点实验室(华中科技大学),湖北 武汉 430074;2.国网湖北省电力有限公司 经济技术研究院,湖北 武汉 430072

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国家自然科学基金项目资助(52207108);强电磁技术全国重点实验室开放课题资助(2025KF021)


An interactive cooperative operation strategy for multi-energy microgrid clusters based on the stable grand coalition
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1. State Key Laboratory of Advanced Electromagnetic Technology (Huazhong University of Science and Technology), Wuhan 430074, China; 2. Economic and Technological Research Institute of State Grid Hubei Electric Power Co., Ltd., Wuhan 430072, China

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    摘要:

    多能源微网协同互联可提升系统灵活性与供能可靠性。针对多能源微网集群合作运行中的多能互补和效益分配问题,提出一种基于稳定大联盟的交互式多能源微网集群协同运行策略。首先,建立单个多能源微网的设备模型和基于效用成本的电-热需求响应模型。其次,提出一种基于合作博弈的交互式多能源微网集群协同运行模型,并证明了所提模型满足超可加性和平衡性,该性质表明互联的多能源微网会形成一个稳定的大联盟以协调多能互补行为。然后,采用了基于核仁的效益分配方案来事后分配合作产生的总效益。最后,设计了一种嵌套式原对偶算法精确求解核仁,相较于传统核仁精确求解算法,所提算法将求解过程迭代次数从2N降低到不超过多能源微网数量N。算例分析结果表明,所提策略能有效促进微网间能源互补利用,提升各微网效益水平,基于核仁的效益分配方案公平合理,嵌套式原对偶算法能有效降低核仁分配方案的计算复杂度。

    Abstract:

    Cooperative interconnection of multi-energy microgrids can enhance the flexibility and reliability of energy supply. Aiming at the problems of multi-energy complementarity and benefit distribution in the cooperative operation of multi-energy microgrid clusters, an interactive cooperative operation strategy based on a stable grand coalition is proposed. First, equipment models of an individual multi-energy microgrid and an electricity-heat demand response model based on utility cost are established. Next, an interactive cooperative operation model for multi-energy microgrid clusters based on cooperative game theory is formulated, and it is proven that the proposed model satisfies superadditivity and balancedness. These properties indicate that interconnected multi-energy microgrids will form a stable grand coalition to coordinate multi-energy complementary behavior. Then, a nucleolus-based benefit allocation scheme is adopted to distribute the total benefits generated by cooperation ex-post. Finally, a nested primal-dual algorithm is designed to accurately solve the nucleolus. Compared with conventional exact nucleolus solution algorithms, the proposed method reduce the number of iterations from 2N to no more than the number of multi-energy microgrids N. Case study results show that the proposed strategy effectively promotes complementary energy utilization among microgrids and improves the benefit level of individual microgrids. The nucleolus-based allocation scheme is fair and reasonable, and the nested primal-dual algorithm significantly reduces the computation complexity of nucleolus-based allocation.

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徐 爽,严道波,方仍存,等.基于稳定大联盟的交互式多能源微网集群协同运行策略[J].电力系统保护与控制,2026,54(06):124-133.[XU Shuang, YAN Daobo, FANG Rengcun, et al. An interactive cooperative operation strategy for multi-energy microgrid clusters based on the stable grand coalition[J]. Power System Protection and Control,2026,V54(06):124-133]

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  • 收稿日期:2025-08-03
  • 最后修改日期:2025-10-20
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  • 在线发布日期: 2026-03-13
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