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考虑P2G-CCS-HFC协调运行的园区综合能源系统分布鲁棒优化调度

程杉 卢渊涛 王灿

电力系统保护与控制2025,Vol.53Issue(10):87-101,15.
电力系统保护与控制2025,Vol.53Issue(10):87-101,15.DOI:10.19783/j.cnki.pspc.240607

考虑P2G-CCS-HFC协调运行的园区综合能源系统分布鲁棒优化调度

Distributed robust optimal scheduling for a regional integrated energy system considering coordinated operation of P2G-CCS-HFC

程杉 1卢渊涛 1王灿1

作者信息

  • 1. 三峡大学电气与新能源学院,湖北 宜昌 443002
  • 折叠

摘要

Abstract

To enhance the low-carbon characteristic and renewable energy utilization rate of regional integrated energy systems(RIES),a low-carbon economic scheduling method for RIES considering the coordinated operation of power-to-gas(P2G),carbon capture and storage(CCS),and hydrogen fuel cells(HFC)is proposed.First,based on the concentrated carbon emissions of traditional thermal power units,CCS is integrated to create a more flexible carbon capture power plant(CCPP).Second,HFC is incorporated into the two-stage P2G process to refine the utilization of hydrogen energy.A comprehensive P2G-CCS-HFC model is established,and under the constraints of hydrogen energy balance,the impact of different equipment decisions on the overall optimization cost is analyzed.Simultaneously,dual market mechanism incentives of green certificate-carbon trading and comprehensive demand response are introduced on the energy supply and demand sides,respectively.Finally,considering the uncertainty of wind and solar power,and using historical data,a scenario-based and data-driven distributed robust scheduling model is constructed with the objective of minimizing the total cost.Simulation results based on case studies show that the proposed method effectively reduces carbon emissions,promotes renewable energy consumption,and offers a reference for low-carbon economic scheduling in RIES.

关键词

碳捕集电厂/电转气/氢燃料电池/绿证碳交易/分布鲁棒优化/区域综合能源系统

Key words

carbon capture power plant/power-to-gas/hydrogen fuel cell/green certificate-carbon trading/distributed robust optimization/regional integrated energy system

引用本文复制引用

程杉,卢渊涛,王灿..考虑P2G-CCS-HFC协调运行的园区综合能源系统分布鲁棒优化调度[J].电力系统保护与控制,2025,53(10):87-101,15.

基金项目

This work is supported by the National Natural Science Foundation of China(No.52107108). 国家自然科学基金项目资助(52107108) (No.52107108)

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