Low-Carbon Optimization Scheduling of Integrated Energy Systems Based on Bilateral Demand Response and Two-Level Stackelberg Game

被引:0
|
作者
Pan, Hua [1 ]
Wu, Qunli [2 ]
Guo, Huiling [2 ]
Bai, Jiayi [2 ]
机构
[1] CHN ENERGY Investment Group Co., Ltd., Beijing,100011, China
[2] Department of Economics and Management, North China Electric Power University, Baoding,071003, China
关键词
Carbon capture - Carbon cycle - Carbon sequestration - Demand response - Direct air capture - Low emission;
D O I
10.3390/en17215491
中图分类号
学科分类号
摘要
In the context of low-carbon energy transformation, fully utilizing the integrated demand response (IDR) resources on the load side can improve the operational flexibility and economy of the integrated energy system (IES). However, establishing a reasonable trading mechanism to enhance users’ participation in IDR has become a key issue that IES urgently needs to solve. To this end, this paper first establishes an IES model that includes electricity, heat, and gas. To reduce carbon emissions, a ladder-type carbon trading mechanism is introduced while adding low-carbon technologies such as carbon capture devices and power-to-gas conversion. Secondly, a bilateral IDR mechanism centered on the load aggregator (LA) is proposed, and a multi-agent operation model including IES, LA, and users is established. The IDR subsidy price is dynamically determined through a two-level Stackelberg game model involving IES, LA, and users. Then, through KKT conditions and the Big M method, the two-level game model is turned into an IES-LA game model, which is solved using a combination of the White Shark Optimization method and the Gurobi solver. The final simulation results show that the scheduling model can fully reflect the time value of IDR resources, and the IES cost is decreased by USD 152.22, while LA and user benefits are increased by USD 54.61 and USD 31.85. Meanwhile, the ladder-type carbon trading mechanism and low-carbon technology have effectively achieved low-carbon operation of the system. © 2024 by the authors.
引用
收藏
相关论文
共 50 条
  • [11] Distributed low-carbon operational optimization model of an integrated energy system based on ladder carbon trading and integrated demand response
    Yan, Yi
    Liu, Mingqi
    Li, Shuzhen
    Li, Chengdong
    Li, Ke
    Wang, Xuerui
    INTERNATIONAL JOURNAL OF GREEN ENERGY, 2024, 21 (06) : 1324 - 1344
  • [12] Trading strategy and benefit optimization of load aggregators in integrated energy systems considering integrated demand response: A hierarchical Stackelberg game
    Li, Songrui
    Zhang, Lihui
    Nie, Lei
    Wang, Jianing
    ENERGY, 2022, 249
  • [13] Economic and low-carbon dispatch of industrial integrated energy system with EV load based on Stackelberg game framework
    Chen, Lingjie
    Song, Chunyue
    Jiang, Wei
    Zhao, Jun
    JOURNAL OF RENEWABLE AND SUSTAINABLE ENERGY, 2024, 16 (02)
  • [14] Short-term electric power and energy balance optimization scheduling based on low-carbon bilateral demand response mechanism from multiple perspectives
    Li, Juan
    Li, Yonggang
    Liu, Huazhi
    IET GENERATION TRANSMISSION & DISTRIBUTION, 2024,
  • [15] Distributed Two-Level Energy Scheduling of Networked Regional Integrated Energy Systems
    Asl, Dariush Keihan
    Seifi, Ali Reza
    Rastegar, Mohammad
    Dabbaghjamanesh, Morteza
    Hatziargyriou, Nikos D.
    IEEE SYSTEMS JOURNAL, 2022, 16 (04): : 5433 - 5444
  • [16] Low-Carbon economic scheduling with Demand-Side response uncertainty in regional integrated energy system
    Yan, Ning
    Li, Xiangjun
    Wu, Zhongli
    Shao, Junyan
    Guerrero, Josep M.
    INTERNATIONAL JOURNAL OF ELECTRICAL POWER & ENERGY SYSTEMS, 2024, 156
  • [17] Optimal dispatch of community integrated energy system based on Stackelberg game and integrated demand response under carbon trading mechanism
    Lu, Qing
    Guo, Qisheng
    Zeng, Wei
    APPLIED THERMAL ENGINEERING, 2023, 219
  • [18] Research on two-level energy management based on tiered demand response and energy storage systems
    Wang, Danhao
    Peng, Daogang
    Huang, Dongmei
    Ren, Lan
    IET RENEWABLE POWER GENERATION, 2024,
  • [19] Optimal scheduling of integrated energy system with coal-to-hydrogen and carbon capture power plant based on low-carbon demand response
    Yang Z.
    Xing H.
    Jiang W.
    Wang H.
    Sun Y.
    Yan Z.
    Dianli Zidonghua Shebei/Electric Power Automation Equipment, 2024, 44 (04): : 25 - 32
  • [20] Dispatching strategy of an active distribution network with multiple regional integrated energy systems based on two-level game optimization
    Li X.
    Ma K.
    Cheng S.
    Dianli Xitong Baohu yu Kongzhi/Power System Protection and Control, 2022, 50 (01): : 8 - 22