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级联抽水蓄能系统与直流输电协调日前调度的分布鲁棒优化
Distributionally robust coordinated day-ahead scheduling of Cascade pumped hydro energy storage system and DC transmission
| 作者 | Mao Liu · Xiangyu Kong · Jijian Lian · Jimin Wang · Bohan Yang |
| 期刊 | Applied Energy |
| 出版日期 | 2025年1月 |
| 卷/期 | 第 384 卷 |
| 技术分类 | 储能系统技术 |
| 技术标签 | 储能系统 可靠性分析 |
| 相关度评分 | ★★★★★ 5.0 / 5.0 |
| 关键词 | Novel two-stage DRO coordinates multi-energy systems with cascade pumped hydro storage and HVDC transmission enhancing synergistic flexibility. |
语言:
中文摘要
摘要 大规模风电和光伏电力的接入给电力系统的运行带来了显著的不确定性。为提升系统的经济性和可靠性,本文研究了包含级联抽水蓄能(CPHES)系统和直流输电的多能源电力系统的协调日前调度问题。本文提出了一种联合优化模型,旨在最小化系统总运行成本及可再生能源弃电惩罚,显式考虑了CPHES的灵活调节能力、直流输电的功率损耗以及各类运行约束。为有效应对风电和光伏发电预测中的不确定性,本文构建了一种基于矩信息的新型两阶段分布鲁棒优化(DRO)调度方法。该方法通过构造包含均值、方差和偏度信息的矩型模糊集,有效刻画了不确定性特征。结合线性化技术、对偶理论、线性决策规则以及矩阵变换,将原问题重构为一个可求解的混合整数线性规划(MILP)模型。基于改进的IEEE 73节点系统以及巴西某实际大规模水火电力系统开展的算例分析表明,所提方法能够有效降低系统运行成本,提高风电和光伏的消纳水平,并增强系统对出力不确定性的适应能力。
English Abstract
Abstract Large-scale wind and solar power integration introduces significant operational uncertainty to power systems . To enhance the system's economic efficiency and reliability, this paper investigates the coordinated day-ahead scheduling of a multi-energy power system incorporating a cascade pumped hydro energy storage (CPHES) system and DC transmission. We propose a joint optimization model that minimizes the total system operating cost and renewable energy curtailment penalty, explicitly considering the flexible regulation capabilities of CPHES , DC transmission power losses, and various operational constraints. To effectively manage the uncertainty associated with wind and solar power forecasts, we develop a novel two-stage distributionally robust optimization (DRO) scheduling method based on moment information. This method constructs a moment-based ambiguity set, incorporating mean, variance, and skewness information, to effectively capture the uncertainty. Leveraging linearization techniques, duality theory, linear decision rules, and matrix transformations, the original problem is reformulated into a tractable mixed-integer linear programming (MILP) model. Case studies based on a modified IEEE 73-bus system and a real large-scale hydro-thermal power system in Brazil demonstrate that the proposed method effectively reduces system operating costs, improves wind and solar power accommodation, and enhances the system's resilience to output uncertainties.
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SunView 深度解读
该分布式鲁棒优化调度技术对阳光电源储能系统具有重要应用价值。论文中梯级抽水蓄能与直流输电协调调度的思路,可直接应用于ST系列PCS与PowerTitan储能系统的多场站协同控制策略。基于矩信息的两阶段DRO方法能有效处理光伏出力不确定性,可集成到iSolarCloud平台的日前调度模块,提升SG系列逆变器配合储能系统的经济调度能力。线性化MILP求解框架为大规模储能电站群的实时优化提供了计算可行性,支撑阳光电源构建源网荷储协调控制解决方案,降低弃风弃光率,增强系统韧性。