1. 1.国网无锡供电公司,江苏,无锡,214000
2. 南京工程学院,江苏,南京,211167
纸质出版:2026
移动端阅览
许翰宸,李 欣,吴文娴,马佳炜,赵紫恒,於慧敏,王明深.计及低碳经济运行的微电网-多EV聚合商混合博弈策略[J].智慧电力,2026,54(3):108-115.
doi:10.20204/j.sp.2026.03013
许翰宸,李 欣,吴文娴,马佳炜,赵紫恒,於慧敏,王明深.计及低碳经济运行的微电网-多EV聚合商混合博弈策略[J].智慧电力,2026,54(3):108-115. DOI: 10.20204/j.sp.2026.03013.
doi:10.20204/j.sp.2026.03013 DOI:
在“双碳”目标驱动能源结构低碳转型的背景下,针对规模化电动汽车(EV)接入所引发的多主体利益冲突、充电负荷不确定性及低碳交易机制复杂等问题,提出一种计及低碳经济运行的微电网(MG)-多EV聚合商混合博弈调度策略。首先,建立基于绿色电力证书与碳排放权融合的交易机制成本模型,将绿色价值与碳排放成本内部化,以激励主体低碳减排与绿电消纳。其次,考虑快、慢充EV的差异化用能特性,通过构造负荷可调边界,建立计及用户出行不确定性的集群可调度潜力模型。进而,融合纵向主从博弈与横向合作博弈,构建考虑纳什谈判的MG-多EV聚合商混合博弈模型。算例分析结果表明,所提策略在降低系统碳排放、提高整体运行经济性、促进新能源就地消纳等方面具有显著优势,实现了MG与多EV聚合商的互利共赢。
Driven by the “dual carbon” goal promoting the low-carbon transformation of the energy structure
and addressing challenges such as multi-stakeholder conflicts of interest
uncertainty in charging loads
and the complexity of low-carbon trading mechanisms caused by the large-scale integration of electric vehicles (EVs)
a microgrid (MG)-multiple EV aggregator hybrid game scheduling strategy considering low-carbon economic operation is proposed. Firstly
a cost model for a trading mechanism integrating green electricity certificates and carbon emission allowances is established. This model internalizes the green value and carbon emission costs to incentivize stakeholders towards low-carbon emission reduction and green power consumption. Secondly
considering the differentiated energy consumption characteristics of fast and slow charging EVs
a cluster schedulable potential model accounting for user travel uncertainty is developed by constructing load adjustable boundaries. Furthermore
by integrating vertical Stackelberg games and horizontal cooperative games
a Nash negotiation-based MG-multiple EV aggregator hybrid game model is constructed. Case study results demonstrate that the proposed strategy offers significant advantages in reducing system carbon emissions
improving overall operational economy
and promoting the local consumption of renewable energy
thereby achieving mutual benefits and a win-win situation for the MG and multiple EV aggregators.
中国电力企业联合会. 能源互联网系统智能电网与热、气、水、交通系统的交互: GB/T 44637-2024 [S ] . 北京:中国标准出版社,2024.
裴开,黄桦,程含渺. 基于二次规划的台区电动汽车有序充电动态控制策略 [J ] . 浙江电力,2025,44(8): 44-53.
鲍谚,石锦凯,陈世豪. 考虑负荷预测不确定性的快充站储能鲁棒实时控制策略 [J ] . 电力系统自动化,2023,47(10): 107-116.
孙舟,王洪彪,肖万芳,等. 基于分布鲁棒联合机会约束的光储充电站滚动优化调控模型 [J ] . 智慧电力,2024,52(4): 1-7.
牛焕娜,王青林,袁嘉兴,等. 基于三层博弈的社区综合能源系统电热交易策略 [J ] . 电力系统保护与控制,2024,52(5): 25-37.
房宇轩,胡俊杰,马文帅. 计及用户意愿的电动汽车聚合商主从博弈优化调度策略 [J ] . 电工技术学报,2024,39(16): 5091-5103.
徐璟. 基于非合作博弈的综合能源系统优化调度研究 [D ] . 北京: 华北电力大学,2022.
姜婷玉,陶劲宇,王珂,等. 基于非合作博弈的高耗能工业负荷参与调峰策略 [J ] . 电力系统自动化,2025,49(3): 13-21.
李鹏,吴迪凡,李雨薇,等. 基于综合需求响应和主从博弈的多微网综合能源系统优化调度策略 [J ] . 中国电机工程学报,2021,41(4): 1307-1321.
米阳,赵海辉,付起欣,等. 考虑风光不确定与碳交易的区域综合能源系统双层博弈优化运行 [J ] . 电网技术,2023,47(6): 2174-2188.
蔡昌春,何瑶瑶,石庆伦,等. 考虑绿证-碳交易与需求响应的含氢IES低碳优化调度 [J ] . 电力工程技术,2025,44(3): 43-52.
李嘉祺,陈艳波,陈来军,等. 工业园区综合能源系统低碳经济优化运行模型 [J ] . 高电压技术,2022,48(8): 3190-3200.
艾欣,张瑛楠,潘玺安. 考虑精细化碳交易的共享储能多微网系统经济调度 [J ] . 太阳能学报,2025,46(10): 65-76.
张程,严子晟,江炜龙. 考虑EV用户演化的多主体低碳合作优化运行策略 [J ] . 电网技术,2025,49(6): 2544-2553.
LIAO W,XIAO F,LI Y X,et al. Comparative study on electricity transactions between multi-microgrid: A hybrid game theory-based peer-to-peer trading in heterogeneous building communities considering electric vehicles [J ] . Appl Energy,2024,367:123459.
张忠会,熊骁跃,万昶,等. 计及电-碳交易与综合贡献率的多微网合作运行优化策略 [J ] . 电网技术,2024,48(8): 3258-3268.
王华卿. 风光氢微网系统配置及运营优化模型研究 [D ] . 北京:华北电力大学,2024.
葛乐,王庆园,王明深,等. 考虑充放电激励机制的电动汽车聚合商参与能量-调频市场多阶段运营策略 [J ] . 电力自动化设备,2024,44(6): 176-184.
吴盛军,曹路,陈浩,等. 基于充放电裕度的电动汽车集群一次调频控制策略 [J ] . 电力工程技术,2024,43(2): 154-162.
TANG S Y,MU Y F,DONG X H,et al. Modeling electric vehicle charging load dynamics: a spatial-temporal approach integrating trip chains and dynamic user equilibrium [J ] . IEEE Transactions on Smart Grid,2025,16(1): 582-597.
舒征宇,刘文灿,李黄强,等. 基于合作博弈与动态分时电价的电动汽车有序充放电策略 [J ] . 电力工程技术,2025,44(3): 179-187.
李欣然,李晓露,陆一鸣,等. 考虑用户有限理性行为的电动汽车充电需求分析 [J ] . 电测与仪表,2025,62(2): 154-164.
李泽宁,孙宏斌,薛屹洵,等. 计及需求侧资源的电力-交通系统协同负荷恢复随机优化方法:以建筑用能为例 [J ] . 中国电机工程学报,2025,45(20): 8024-8040.
JIAN J,ZHANG M Y,XU Y L,et al. An analytical polytope approximation aggregation of electric vehicles considering uncertainty for the day-ahead distribution network dispatching [J ] . IEEE Transactions on Sustainable Energy,2024,15(1): 160-172.
CAPELETTI M B,HAMMERSCHMITT B K,DA-SILVA L N F,et al. User behavior in fast charging of electric vehicles: an analysis of parameters and clustering [J ] . Energies,2024,17(19): 4850.
张睿骐,阳辉,王子睿,等. 面向车-库-网多层级协调控制系统的电动汽车多时段可调度域的构建和分析 [J ] . 电工技术学报,2025,40(13): 4256-4275.
王杨洋,茆美琴,杨铖,等. 面向多场景辅助服务的大规模电动汽车聚合可调度容量建模 [J ] . 电力系统自动化,2024,48(7): 103-115.
SAATLOO A M,MIRZAEI M A,MOHAMMADI-IVATLOO B. A robust decentralized peer-to-peer energy trading in community of flexible microgrids [J ] . IEEE Systems Journal,2023,17(1): 640-651.
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