南方电网技术2026,Vol.20Issue(3):103-114,126,13.DOI:10.13648/j.cnki.issn1674-0629.2026.03.010
绿证-碳交易交互机制下的虚拟电厂优化调度
Optimal Scheduling of Virtual Power Plant Under the Green Certificate Carbon Trading Interaction Mechanism
摘要
Abstract
Under the background of dual carbon strategy,in order to promote the construction of a new round of clean,low-carbon,safe and efficient new energy system in China,a virtual power plant optimal scheduling strategy method is proposed considering electric vehicle charging and discharging technology under the green certificate carbon trading interaction mechanism.Firstly,the mathematical model of virtual power plant and load side response model are established,and the adjustable upper and lower limits of cluster electric vehicles are predicted.Secondly,considering the carbon quotas and green certificate quotas of electric vehicles,the ladder type carbon trading model and green certificate trading model are established.Based on the conversion coefficients of the two mechanisms,the green certificate carbon trading interaction mechanism is designed,and the optimal scheduling model is constructed with the goal of minimizing the comprehensive cost of virtual power plants.Finally,calculation results show that the proposed model can realize the economy and low-carbon operation of virtual power plant.And the impact of electric vehicle charging and discharging mode and penetration rate,carbon trading price and green certificate trading price on virtual power plant operation are verified and analyzed.关键词
绿证交易/碳交易/交互机制/虚拟电厂/优化调度Key words
green certificate trading/carbon trading/interaction mechanism/virtual power plant/optimal scheduling分类
信息技术与安全科学引用本文复制引用
陈文颖,郑修诺,闫倩文,王咏梅,刘卫亮,王昕,康佳垚..绿证-碳交易交互机制下的虚拟电厂优化调度[J].南方电网技术,2026,20(3):103-114,126,13.基金项目
中央高校基本科研业务费资助项目(2023JG005) (2023JG005)
河北省高等学校科学技术研究项目(CXY2023001) (CXY2023001)
国家能源集团科技项目(GINY-21-98). Supported by the Basic Research Fund for Central Universities Project(2023JG005) (GINY-21-98)
the Science and Technology Research Project of Higher Education Institutions in Hebei Province(CXY2023001) (CXY2023001)
the National Energy Group Science and Technology Project(GINY-21-98). (GINY-21-98)