考虑扩展碳排放流和综合需求响应的热电联合系统低碳经济调度
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福州大学 电气工程与自动化学院,福州 350108

作者简介:

曾宇(1998),男,江西抚州人,硕士,研究方向为综合能源系统优化运行。

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中图分类号:

TM721

基金项目:

福建省自然科学基金资助项目(2022J05125)


Low carbon economic dispatch of combined heat and power system considering augmented carbon emission flow and integrated demand response
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School of Electrical Engineering and Automation, Fuzhou University, Fuzhou 350108 , China

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    摘要:

    针对综合能源系统的低碳经济运行问题,提出了考虑扩展碳排放流和综合需求响应的热电联合系统优化方法。首先,建立了含有碳捕集和储热装置的扩展碳排放流模型,结合碳排放流理论和Shapley值法分析负荷侧的碳排放责任,并计算其动态碳排放因子。其次,构建基于负荷侧热惯性的电热综合需求响应模型。在此基础上,提出考虑碳交易机制的热电联合系统双层调度模型。上层为电力系统模型,下层为能量枢纽模型,以系统总成本最小为目标函数进行低碳经济调度,采用交替方向乘子法进行求解。最后,采用IEEE14节点电力系统进行算例分析,仿真结果验证了所提模型的有效性。

    Abstract:

    Aiming at the low carbon economy operation problem of integrated energy system, an optimization method of combined heat and power system considering augmented carbon emission flow and integrated demand response is proposed. Firstly, an augmented carbon emission flow model with carbon capture and heat storage devices is established. The carbon emission responsibility of load side is analyzed by combining carbon emission flow theory and Shapley value method, and its dynamic carbon emission factors are calculated. Secondly, a comprehensive demand response model based on load side thermal inertia is constructed. On this basis, a two-layer scheduling model of CHP system considering carbon trading mechanism is proposed. The upper layer is the power system model, and the lower layer is the energy hub model. The low-carbon economic scheduling is carried out with the minimum total system cost as the objective function, and the alternating direction multiplier method is used to solve the problem. Finally, the IEEE14-node power system is used for example analysis, and the simulation results verify the effectiveness of the proposed model.

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引用本文

曾宇,乐生铜,陈灿鸿.考虑扩展碳排放流和综合需求响应的热电联合系统低碳经济调度[J].电力需求侧管理,2026,28(3):14-21

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  • 收稿日期:2025-12-21
  • 最后修改日期:2026-01-28
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  • 在线发布日期: 2026-07-20
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