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计及阶梯碳交易机制的热电氢联供型综合能源系统多目标优化调度

邢家维 赵帅 杨颂 王玥娇 孙立群

山东电力技术2025,Vol.52Issue(3):21-31,11.
山东电力技术2025,Vol.52Issue(3):21-31,11.DOI:10.20097/j.cnki.issn1007-9904.2025.03.003

计及阶梯碳交易机制的热电氢联供型综合能源系统多目标优化调度

Multi-objective Optimal Scheduling of Combined Heat,Power,and Hydrogen Integrated Energy System Considering the Stepped Carbon Trading Mechanism

邢家维 1赵帅 1杨颂 1王玥娇 1孙立群1

作者信息

  • 1. 国网山东省电力公司电力科学研究院,山东 济南 250003
  • 折叠

摘要

Abstract

Against the backdrop of the"dual-carbon"goals,the combined heat,power,and hydrogen supply integrated energy system emerges as a promising clean energy solution.It effectively integrates electricity,heat,and hydrogen,meeting the continuously growing energy demand while reducing carbon emissions.To achieve the widespread application of the integrated energy system,a multi-objective optimization scheduling method is introduced for the integrated energy system considering a tiered carbon trading mechanism in this paper.Firstly,the architecture of the system is established,encompassing equipment such as thermal power units,gas boilers,power-to-gas,and hydrogen fuel cells.Secondly,a multi-objective optimization model is formulated,considering the reduction of operational expenses and carbon footprints.Finally,a particle swarm algorithm with linearly decreasing constraints is employed for solving,enhancing the convergence accuracy and speed of the solution.Simulation results indicate that the proposed model effectively improves the economic benefits and carbon emission reduction capability of the system.

关键词

综合能源/优化调度/阶梯碳交易机制/多目标优化/粒子群算法

Key words

integrated energy/optimal scheduling/stepped carbon trading mechanism/multi-objective optimization/particle swarm algorithm

分类

动力与电气工程

引用本文复制引用

邢家维,赵帅,杨颂,王玥娇,孙立群..计及阶梯碳交易机制的热电氢联供型综合能源系统多目标优化调度[J].山东电力技术,2025,52(3):21-31,11.

基金项目

国网山东省电力公司电力科学研究院自主研发项目"用户侧综合能源系统协同运行关键技术研究"(ZY-2023-11).Independent Research and Development Project of State Grid Shandong Electric Power Research Institute"Research on Key Technologies for Collaborative Operation of User Side Integrated Energy Systems"(ZY-2023-11). (ZY-2023-11)

山东电力技术

1007-9904

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