新能源小镇综合能源系统两阶段鲁棒优化配置
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TM721

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新疆维吾尔自治区重大科技专项资助项目(2022A01001-4)


Two-stage robust optimization configuration of comprehensive energy system for the new energy town
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    摘要:

    针对高比例可再生能源并网过程中因波动性与间歇性导致综合能源系统供电可靠性不足的问题,文中提出一种面向新能源小镇的两阶段鲁棒优化配置策略。首先,第一阶段利用源-荷历史数据,以系统配置成本最低为目标函数,对机组容量配置进行初步决策;第二阶段采用多面体不确定集描述源-荷的不确定性,以系统运行成本最低为目标函数,结合第一阶段的决策结果,获取最恶劣场景下源-荷预测功率数据。其次,引入不确定度参数以控制鲁棒优化配置方案的保守度。然后,利用列与约束生成(column and constraint generation, C&CG)算法对模型进行求解,通过迭代更新机组容量配置,收敛得到最优配置方案。最后,以我国北方某新能源小镇为研究案例,算例结果表明所提策略与优化方法具有可行性,且能够提高新能源小镇的供电可靠性和经济性。

    Abstract:

    A two-stage robust optimization configuration strategy for the new energy town is proposed to address the issue of insufficient power supply reliability in integrated energy systems due to the fluctuation and intermittency characteristics during the integration of a high proportion of renewable energy. In the first stage, historical source-load data is utilized to make preliminary decisions on unit capacity configuration, with the objective of minimizing system configuration costs. In the second stage, polyhedral uncertainty sets are employed to describe the uncertainties of source-load, aiming to minimize system operation costs, and power data predictions for the worst-case scenarios are obtained based on the decision outcomes of the first stage. An uncertainty parameter is then introduced to control the conservativeness of the robust optimization configuration scheme. The model is solved using the column and constraint generation (C&CG) algorithm, which iteratively determines unit capacity configuration and converges to the optimal configuration scheme. A case study of the new energy town in Northern China is conducted, and the results verify the effectiveness and feasibility of the proposed strategy and optimization method, demonstrating their capability to enhance the power supply reliability and economy of the new energy town.

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胡利,程静.新能源小镇综合能源系统两阶段鲁棒优化配置[J].电力工程技术,2026,45(2):21-29. HU Li, CHENG Jing. Two-stage robust optimization configuration of comprehensive energy system for the new energy town[J]. Electric Power Engineering Technology,2026,45(2):21-29.

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历史
  • 收稿日期:2025-06-10
  • 最后修改日期:2025-10-28
  • 在线发布日期: 2026-02-12
  • 出版日期: 2026-02-28
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