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考虑电碳耦合交易的多微网混合博弈优化运行策略

OPTIMAL OPERATION STRATEGY OF MULTI-MICROGRID HYBRID GAME CONSIDERING ELECTRICITY-CARBON COUPLING TRADING

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【作者】 刘佳佳田铭兴刘斯远苏照旭孙立军

【Author】 Liu Jiajia;Tian Mingxing;Liu Siyuan;Su Zhaoxu;Sun Lijun;College of Automation & Electrical Engineering, Lanzhou Jiaotong University;Gansu Province Engineering Laboratory for Rail Transit Electrical Automation(Lanzhou Jiaotong University);China Key Laboratory of Opto-technology and Intelligent Control Ministry of Education (Lanzhou Jiaotong University);

【通讯作者】 田铭兴;

【机构】 兰州交通大学自动化与电气工程学院甘肃省轨道交通电气自动化工程实验室(兰州交通大学)光电技术与智能控制教育部重点实验室(兰州交通大学)

【摘要】 为实现多微网(MMG)的协同管理问题,在保障系统低碳经济运行的同时,平衡配电网运营商(DSO)与各MG间利益分配,提出一种考虑电碳耦合交易的多微网混合博弈优化运行策略。首先构建配电网运营商-多微网的主从博弈模型;其次基于纳什议价理论构建考虑电碳耦合交易的多微网间的合作博弈模型,各微网主体可同时参与到电能和碳排放配额的交易,并在利益分配机制中,通过综合贡献度指标来确保各微网间的收益分配公平合理。通过二分法与交替方向乘子法(ADMM)的协同迭代实现该混合博弈的分布式求解,在保证信息隐私的同时提升计算效率。算例分析与方案对比结果表明,所提策略能够有效提升各主体收益,减少系统的碳排量,实现微网间利益的公平分配。

【Abstract】 In order to realize the collaborative management problem of multi-microgrids(MMG), and to balance the distribution of benefits between the distribution system operator(DSO) and each MG while guaranteeing low-carbon and economic operation of the system, this paper proposes a hybrid game strategy for multi-microgrids that considers electricity-carbon coupling trading. Firstly, a master-slave game model is constructed with the DSO as the leader and the MGs as the followers. Secondly, based on Nash bargaining theory, a cooperative game model between microgrids considering electricity-carbon coupling trading is constructed, and in the benefit distribution mechanism, the comprehensive contribution rate is used to ensure a fair and reasonable distribution of benefits. The distributed solution of this hybrid game is realized through the synergistic iteration of bisection method and alternating direction multiplier method(ADMM), which improves the computational efficiency while ensuring the information privacy. Comparative analysis and case studies demonstrate that the proposed strategy can effectively enhance the benefits of each subject, reduce the carbon emissions of the system, and realize the fair distribution of benefits among microgrids.

【基金】 国家自然科学基金(52167013);甘肃省自然科学重点项目(24JRRA225);甘肃省联合基金一般项目(25JRRA1167);甘肃省自然科学基金(25JRRA178)
  • 【文献出处】 太阳能学报 ,Acta Energiae Solaris Sinica , 编辑部邮箱 ,2025年11期
  • 【分类号】TM73
  • 【下载频次】341
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