引用本文:朱瑛,郭健伟,周亦洲,韩海腾,卫志农.考虑碳-绿证市场耦合的多虚拟电厂电-碳P2P交易模型[J].电力自动化设备,2025,45(1):51-58
ZHU Ying,GUO Jianwei,ZHOU Yizhou,HAN Haiteng,WEI Zhinong.Electricity-carbon P2P trading model for multiple virtual power plants considering carbon-green certificate market coupling[J].Electric Power Automation Equipment,2025,45(1):51-58
【打印本页】   【HTML】   【下载PDF全文】   查看/发表评论  【EndNote】   【RefMan】   【BibTex】
←前一篇|后一篇→ 过刊浏览    高级检索
本文已被:浏览 6375次   下载 1116 本文二维码信息
码上扫一扫!
考虑碳-绿证市场耦合的多虚拟电厂电-碳P2P交易模型
朱瑛, 郭健伟, 周亦洲, 韩海腾, 卫志农
河海大学 电气与动力工程学院,江苏 南京 211100
摘要:
为了探索多市场交易下虚拟电厂(VPP)之间的点对点(P2P)交易模式,提出一种考虑碳-绿证市场耦合的多VPP电-碳P2P交易模型。建立包含光伏、储能、中央空调、碳捕集机组和用户负荷的多VPP聚合模型,建立绿证-碳配额耦合的VPP交易模型;在此基础上,基于合作博弈理论,建立多VPP社会效益最大化模型,采用交替方向乘子法对模型进行分布式求解,并建立非对称纳什议价模型对合作剩余利润进行分配;通过算例分析验证所提模型能在提升经济效益的同时,减少VPP的CO2排放量。
关键词:  虚拟电厂  碳捕集  P2P交易  非对称纳什议价  碳-绿证市场耦合  合作博弈
DOI:10.16081/j.epae.202411019
分类号:TM73;TK01
基金项目:国家自然科学基金资助项目(52107085);江苏省自然科学基金资助项目(BK20210367)
Electricity-carbon P2P trading model for multiple virtual power plants considering carbon-green certificate market coupling
ZHU Ying, GUO Jianwei, ZHOU Yizhou, HAN Haiteng, WEI Zhinong
School of Electrical and Power Engineering, Hohai University, Nanjing 211100, China
Abstract:
In order to explore the peer to peer(P2P) trading mode between virtual power plants(VPPs) under multi-market trading, an electricity-carbon P2P trading model for multiple VPPs considering the carbon-green certificate market coupling is proposed. The aggregation model of multiple VPPs including photovoltaic, energy storage, central air conditioning, carbon capture unit and user load is established, and the VPP trading model coupled with green certificate and carbon quota is also established. On this basis, based on the cooperative game theory, the social benefit maximization model of multiple VPPs is established, which is distributed solved by the alternating direction method of multipliers. The asymmetric Nash bargaining model is established to distribute the residual cooperative profits. A numerical example is given to verify that the proposed model can improve the economic benefit and reduce the CO2 emission of VPP.
Key words:  virtual power plants  carbon capture  P2P trading  asymmetric Nash bargaining  carbon-green certificate market coupling  cooperative game

用微信扫一扫

用微信扫一扫