综合智慧能源 ›› 2025, Vol. 47 ›› Issue (5): 51-61.doi: 10.3969/j.issn.2097-0706.2025.05.006

• 市场主体决策优化 • 上一篇    下一篇

火电主体参与“电能-碳权”市场决策逻辑及策略分析

吉斌1,2(), 李永刚1,2(), 昌力1,2(), 李利利1,2, 涂杉杉1,2, 钱娟1,2   

  1. 1.国电南瑞南京控制系统有限公司, 南京 211106
    2.国网电力科学研究院有限公司(南瑞集团有限公司),南京 211106
  • 收稿日期:2024-11-13 修回日期:2024-12-07 出版日期:2025-05-25
  • 作者简介:吉斌(1992),男,工程师,硕士,从事电力现货交易、代理购电、区块链技术等方面的研究,1498206259@qq.com
    李永刚(1970),男,教授,博士,从事电力市场运营管理、电力市场监管、低碳市场技术等方面的研究,liyonggang@sgepri.sgcc.com.cn
    昌力(1982),男,高级工程师,硕士,从事电力市场、电力系统自动化调度等方面的研究,changli80@163.com
  • 基金资助:
    国家电网有限公司总部科技项目(1400-202440417A-3-5-YS)

Analysis of the logic and strategies for thermal power entities' participation in electricity-carbon market decision making

JI Bin1,2(), LI Yonggang1,2(), CHANG Li1,2(), LI Lili1,2, TU Shanshan1,2, QIAN Juan1,2   

  1. 1. Guodian Nari Nanjing Control System Company Limited, Nanjing 211106, China
    2. State Grid Electric Power Research Institute Company Limited(NARI Group Corporation ),Nanjing 211106, China
  • Received:2024-11-13 Revised:2024-12-07 Published:2025-05-25
  • Supported by:
    State Grid Corporation of China Science and Technology Project(1400-202440417A-3-5-YS)

摘要:

随着市场化程度加深,火电主体参与多市场协同优化的难度越来越大,为有效支撑火电主体参与市场决策的需求,综合分析电力市场、碳权市场以及“电能-碳权”市场交易决策的影响因素,设计了电力市场、碳权市场交易决策逻辑,探讨了“电能-碳权”市场的决策原理。其次,提出了火电主体参与碳权市场交易决策的建模方法,分别给出碳权市场交易决策的流程、目标、约束条件等,为火电主体参与碳权市场提供了分析与决策逻辑。最后,以火电主体收益最大为目标,构建了面向发电主体收益最优的短期、长期“电能-碳权”市场协同决策模型,并通过算例进行模型的测算和验证,为火电主体参与“电能-碳权”市场提供了市场决策的思路和方法。

关键词: 碳权市场, 电力市场, 碳电市场, 多市场协同, 决策逻辑, 优化决策, 火电主体

Abstract:

As market mechanisms in energy-related markets continue to improve, it has become increasingly challenging for thermal power entities to synergize their operations in multiple markets. To support the effective participation of thermal power entities in market decision-making, factors influencing trading decisions in the electricity market, carbon market, and the integrated electricity-carbon market were analyzed. Based on the decision-making principles of the integrated market, the trading decision-making logic for both the electricity market and carbon market was developed. Subsequently, the analysis and modeling of thermal power entities' participation in carbon market trading decisions provided processes, objectives, and constraints for carbon market trading decisions. With the goal of maximizing the benefits for thermal power entities, a short-term and long-term collaborative decision-making model for the electricity-carbon market was developed. Through case studies and calculations, the effectiveness of the proposed model for the participation of thermal power entities in the electricity-carbon market was validated.

Key words: carbon emission rights market, electricity market, multi-market collaboration, decision-making logic, optimized decision making, thermal power entity

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