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计算主动配电网聚合灵活性多时段有功功率成本曲线的障碍与洞察
Barriers and Insights to Compute Multi-Period Cost Curves of Active Power Aggregated Flexibility from Distribution Systems for TSO-DSO Coordination
| 作者 | Florin Capitanescu |
| 期刊 | IEEE Transactions on Power Systems |
| 出版日期 | 2025年5月 |
| 技术分类 | 储能系统技术 |
| 技术标签 | 储能系统 多物理场耦合 |
| 相关度评分 | ★★★★★ 5.0 / 5.0 |
| 关键词 | 主动配电网 有功聚合灵活性 分段线性成本曲线 多时段计算 计算方法 |
语言:
中文摘要
主动配电网(ADS)中的灵活性资源可通过输配电系统运营商间的协调机制支持输电系统安全运行。现有方法可计算单一时段接口处的分段线性有功功率聚合灵活性成本曲线,但储能和柔性负荷等设备的时间耦合特性使得多时段成本曲线的计算在概念与计算上均面临挑战。本文首先揭示了此类计算的主要障碍,随后首次提出两种基于定制化多时段交流最优潮流、在不同目标与约束下组合求解的分段线性有功/能量聚合灵活性成本曲线计算方法。通过34节点24时段及191节点96时段的实际系统验证了该方法的有效性与计算效率,并提出了克服现存障碍的新见解与研究方向。
English Abstract
The sources of flexibility hosted in active distribution systems (ADSs) can contribute to transmission grid operation security through coordination mechanisms between the operators of distribution and transmission systems. Piece-wise linear cost curves of active power aggregated flexibility of an ADS at the interface with the transmission system can be calculated for one period. However, the time coupling of energy devices such as energy storage systems and flexible demand challenges drastically conceptually and computationally the calculation of cost curves in a multi-period timeframe. This paper first unveils the barriers in computing such cost curves. Then, the paper develops for the first time a methodology, with two versions, for calculating piece-wise linear cost curves of active power/energy aggregated flexibility of an ADS. The core of the methodology relies on combining tailored multi-period AC optimal power flow calculations under various objectives and sets of constraints. The value and computation efficiency of the methodology are demonstrated using a 34-bus benchmark ADS under 24 periods and a 191-bus ADS under up to 96 periods. Finally, the paper provides new insights and research directions to overcome some of the identified barriers.
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SunView 深度解读
该多时段聚合灵活性成本曲线计算技术对阳光电源ST系列储能系统和PowerTitan大型储能系统具有重要应用价值。研究提出的时间耦合优化方法可直接应用于储能变流器的多时段调度策略,通过精确计算储能SOC约束下的灵活性成本曲线,优化储能系统参与输配协调的报价策略。该技术可集成至iSolarCloud云平台,实现分布式储能聚合商功能,提升储能资产在辅助服务市场的收益能力。对于配网侧多台ST储能协同控制,该方法提供的多时段AC-OPF框架可增强系统级能量管理EMS的优化深度,支撑构网型GFM储能在配网灵活性资源聚合中的核心作用,为TSO-DSO协调场景下的商业模式创新提供算法基础。