Coordinated Planning of Electricity-Hydrogen Integrated Energy System Considering Lifecycle Carbon Emissions

被引:0
|
作者
Bian, Haihong [1 ]
Zhou, Chengang [1 ]
Guo, Zhengyang [2 ]
Zhou, Yizhou [3 ]
Ren, Quance [1 ]
机构
[1] Nanjing Institute of Technology, School of Electrical Power Engineering, Nanjing,211167, China
[2] Hangzhou Power Supply Company of State Grid Zhejiang Electricity Power Company Ltd., Hangzhou,310016, China
[3] Hohai University, College of Energy and Electrical Engineering, Nanjing,210098, China
关键词
Cost reduction - Electric power distribution - Emission control - Energy management - Gas emissions - Investments - Iterative methods - Life cycle - Renewable energy;
D O I
暂无
中图分类号
学科分类号
摘要
Hydrogen energy is a promising solution to reaching carbon emissions peak and carbon neutrality. With the development of hydrogen energy devices, coupling hydrogen energy with renewable energy for power generation can compensate for the intermittency and instability of renewable energy. Furthermore, the two-stage coordinated planning of integrated energy system (IES) and electricity-hydrogen integrated energy system (EHIES), compared to independent planning, can help generate additional benefits and reduce carbon emissions. Therefore, this paper proposes a coordinated planning of EHIES considering lifecycle carbon emissions. In the first stage, aiming to minimize investment costs, network losses, voltage deviations, and lifecycle carbon emissions, the equipment capacity and location of EHIES is determined. The life cycle assessment (LCA) method is used to quantify the lifecycle carbon emissions of the EHIES, preparing for the coordinated operation in the second stage. Subsequently, in the second stage, using carbon emissions flow to allocate users' responsibility for emissions, the carbon emissions per unit electricity of the IES system are calculated. With the optimal cost of independent operation for IES and EHIES as the coordinated operation objective, the alternating direction method of multipliers (ADMM) is employed for sequential solution, obtaining the carbon emissions reduction amount, and iteratively updating until convergence. Finally, the effectiveness of the proposed method is verified by using the IEEE 33-bus power distribution network (PDN) and natural gas 6 node systems. The results show that compared to independent planning, the two-stage coordinated planning method reduces the overall operating cost of IES by 3.81% and decreases carbon emissions by 15.89%. This method is effective in reducing the carbon emissions of IES. © 2013 IEEE.
引用
收藏
页码:33889 / 33909
相关论文
共 50 条
  • [31] Capacity Optimization of Hybrid Energy Storage Microgrid Considering Electricity-Hydrogen Coupling
    Li Q.
    Zhao S.
    Pu Y.
    Chen W.
    Yu J.
    Diangong Jishu Xuebao/Transactions of China Electrotechnical Society, 2021, 36 (03): : 486 - 495
  • [32] Optimal energy management of multiple electricity-hydrogen integrated charging stations
    Fang, Xiaolun
    Wang, Yubin
    Dong, Wei
    Yang, Qiang
    Sun, Siyang
    ENERGY, 2023, 262
  • [33] Bi-level robust planning of hydrogen energy system for integrated electricity-heat-hydrogen energy system considering multimode utilization of hydrogen
    Zeng, Guihua
    Liu, Mingbo
    Lei, Zhenxing
    Huang, Xinyi
    ENERGY, 2024, 303
  • [34] Coordinated scheduling of integrated electricity, heat, and hydrogen systems considering energy storage in heat and hydrogen pipelines
    Wang, Chen
    Chen, Sheng
    Zhao, Jingtao
    Zhou, Yizhou
    Wei, Zhinong
    Zheng, Shu
    JOURNAL OF ENERGY STORAGE, 2024, 85
  • [35] Optimal Operation Strategy of Electricity-Hydrogen Regional Energy System under Carbon-Electricity Market Trading
    Li J.
    Wang M.
    Wu Z.
    Tian G.
    Zhang N.
    Liu G.
    Energy Engineering: Journal of the Association of Energy Engineering, 2024, 121 (03): : 619 - 641
  • [36] Reliability Improvement Strategies of Multi-Region Electricity-Hydrogen Integrated Energy Systems Considering Hydrogen Interaction between Different Regions
    Meng, Jun
    Ren, Zhouyang
    Wang, Hao
    Diangong Jishu Xuebao/Transactions of China Electrotechnical Society, 2024, 39 (16): : 5011 - 5027
  • [37] Data-Driven Distributionally Robust Electricity-Hydrogen Trading Considering The Carbon Intensity of Hydrogen Production
    Li, Longyan
    Ning, Chao
    2024 14TH ASIAN CONTROL CONFERENCE, ASCC 2024, 2024, : 1444 - 1449
  • [38] Stochastic optimal scheduling of electricity-hydrogen enriched compressed natural gas urban integrated energy system
    Ye, Jianan
    Xie, Min
    Zhang, Shiping
    Huang, Ying
    Liu, Mingbo
    Wang, Qiong
    RENEWABLE ENERGY, 2023, 211 : 1024 - 1044
  • [39] Integrated Whole-System Plan: An Electricity-Hydrogen Victorian Case Study
    Chen, Ronggen
    Mhanna, Sleiman
    Saedi, Isam
    Mancarella, Pierluigi
    2023 33RD AUSTRALASIAN UNIVERSITIES POWER ENGINEERING CONFERENCE, AUPEC, 2023,
  • [40] Low-Carbon Oriented Collaborative Planning of Electricity-Hydrogen-Gas-Transportation Integrated System Considering Hydrogen Vehicles
    Zhang, Xian
    Gao, Xiaoyan
    Zheng, Yu
    Xu, Yinliang
    Chung, Edward
    Sayed, Ahmed Rabee
    IEEE TRANSACTIONS ON NETWORK SCIENCE AND ENGINEERING, 2024, 11 (06): : 5515 - 5525