系统仿真学报 ›› 2026, Vol. 38 ›› Issue (8): 2179-2196.doi: 10.16182/j.issn1004731x.joss.25-1211

• 专栏:基于仿真的优化及其在新型电力系统中的应用 • 上一篇    

考虑光热电站与氢能利用的虚拟电厂优化调度

陈有松, 程若发, 刘屹, 张谊, 左志豪   

  1. 南昌航空大学 信息工程学院,江西 南昌 330038
  • 收稿日期:2025-12-10 修回日期:2026-02-15 出版日期:2026-08-28 发布日期:2026-08-31
  • 通讯作者: 程若发
  • 第一作者简介:陈有松(2002-),男,硕士生,研究方向为综合能源系统优化调度与不确定性分析。
  • 基金资助:
    国家自然科学基金(52367011);江西省自然科学基金(20232ACB204023)

Optimal Scheduling of Virtual Power Plants Considering Photothermal Power Stations and Hydrogen Energy Utilization

Chen Yousong, Cheng Ruofa, Liu Yi, Zhang Yi, Zuo Zhihao   

  1. School of Information Engineering, Nanchang Hangkong University, Nanchang 330038, China
  • Received:2025-12-10 Revised:2026-02-15 Online:2026-08-28 Published:2026-08-31
  • Contact: Cheng Ruofa

摘要:

为提升含高比例可再生能源虚拟电厂的运行稳定性与低碳性,构建了含光热电站耦合电转气-碳捕集协同调度模型,提出一种带补偿系数的阶梯式碳交易机制与动态掺氢的虚拟电厂优化调度策略。针对风电、光热功率及负荷的多源不确定性,利用包络边界模型模拟,采用信息间隙决策理论为不同风险偏好决策者提供定制化方案。通过建立总运行成本与碳排放最小的双目标优化模型,引入最小-最大归一化与线性加权求和协同策略平衡量纲差异与目标冲突,调用求解器进行多场景对比分析。仿真结果表明:该策略能有效降低系统总成本与碳排放,提升对不确定因素的适应能力,为虚拟电厂低碳经济调度提供新途径。

关键词: 虚拟电厂, 燃气掺氢机组, 阶梯式碳交易, 信息间隙决策理论, 不确定性

Abstract:

To enhance the operational stability and low-carbon performance of virtual power plants (VPPs) with high shares of renewable energy,a coordinated dispatch model integrating concentrated solar power (CSP) plants with power-to-gas (P2G) and carbon capture is developed. An optimal VPP scheduling strategy is proposed, combining a stepped carbon trading mechanism with a compensation coefficient and dynamic hydrogen blending. To address multi-source uncertainties in wind power, CSP power, and loads, an envelope boundary model is used for simulation. Information gap decision theory (IGDT) is applied to provide customized solutions for decision-makers with different risk preferences. A bi-objective optimization model is established to minimize total operating cost and carbon emissions. A coordinated strategy integrating min-max normalization and linear weighted summation is introduced to address differences in scale and conflicts between the objectives. A solver is employed to conduct multi-scenario comparative analyses. Simulation results show that the proposed strategy effectively reduces total system cost and carbon emissions while improving adaptability to uncertainties, providing a new approach to low-carbon economic dispatch of VPPs.

Key words: virtual power plant, hydrogen-blended gas-fired unit, stepped carbon trading, information gap decision theory, uncertainty

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