王云龙, 何山, 艾纯玉, 赵文硕, 朱咏明, 袁至, 程静. 考虑云储能的综合能源运营商-负荷聚合商联盟混合博弈定价策略[J]. 电网与清洁能源, 2024, 40(6): 11-19,29.
引用本文: 王云龙, 何山, 艾纯玉, 赵文硕, 朱咏明, 袁至, 程静. 考虑云储能的综合能源运营商-负荷聚合商联盟混合博弈定价策略[J]. 电网与清洁能源, 2024, 40(6): 11-19,29.
WANG Yunlong, HE Shan, AI Chunyu, ZHAO Wenshuo, ZHU Yongming, YUAN Zhi, CHENG Jing. The Hybrid Game Pricing Strategy for Integrated Energy Operator-Load Aggregator Alliance Considering Cloud Energy Storage[J]. Power system and Clean Energy, 2024, 40(6): 11-19,29.
Citation: WANG Yunlong, HE Shan, AI Chunyu, ZHAO Wenshuo, ZHU Yongming, YUAN Zhi, CHENG Jing. The Hybrid Game Pricing Strategy for Integrated Energy Operator-Load Aggregator Alliance Considering Cloud Energy Storage[J]. Power system and Clean Energy, 2024, 40(6): 11-19,29.

考虑云储能的综合能源运营商-负荷聚合商联盟混合博弈定价策略

The Hybrid Game Pricing Strategy for Integrated Energy Operator-Load Aggregator Alliance Considering Cloud Energy Storage

  • 摘要: 为了准确描述负荷聚合商在与上级主体和同级主体进行能源交易过程中的各主体利益交互,以及用户侧储能昂贵且难以实施的问题。建立了综合能源运营商与负荷聚合商联盟之间的主从博弈模型,并特别考虑了拥有大量光伏用户的负荷聚合商之间的讨价还价博弈,以综合处理各主体之间的竞争与合作关系。为了实现负荷聚合商的低储高放策略,引入了云储能租赁的概念。采用二分法结合(alternating direction method of multipliers,ADMM)求解所构建的模型,以在各方持续互动过程中实现最大化的效益。研究结果表明,所建立的涵盖云储能租赁的混合博弈理论模型在保证各主体利益的同时能够制定合理的定价策略。

     

    Abstract: In order to accurately describe the interaction of interests among various parties in the energy trading process between load aggregators and their superiors and peers,and to address the problem that the user side energy storage is expensive and difficult to be implemented,a master-slave game model between integrated energy operators and load aggregators alliance is established,and the bargaining game between load aggregators with a large number of PV users is especially considered,so as to comprehensively deal with the competition and cooperation between various entities. In addition,in order to realize the low storage and high discharge strategy of load aggregators,the concept of cloud energy storage leasing is introduced. Finally,the dichotomous method combined with ADMM solution is used to solve the constructed model to maximize the benefits in the continuous interaction process of all parties.

     

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