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计及电压与频率稳定约束的异质调节资源机组组合

Voltage and Frequency Stability Constrained Unit Commitment for Power Systems With Heterogeneous Regulation Resources

作者 Yihang Jiang · Shuqiang Zhao
期刊 IEEE Transactions on Sustainable Energy
出版日期 2025年5月
技术分类 风电变流技术
技术标签 储能系统 构网型GFM 跟网型GFL 多物理场耦合
相关度评分 ★★★★★ 5.0 / 5.0
关键词 电力系统 稳定性约束 机组组合模型 频率稳定 电压稳定
语言:

中文摘要

可再生能源渗透率上升及常规机组退役使电力系统逼近稳定运行极限,亟需在调度模型中引入稳定性约束以保障安全运行。本文提出一种计及电压与频率稳定约束的机组组合模型,适用于包含同步发电机、同步调相机、改造为调相机的同步电机以及跟网型或构网型风机在内的异质调节资源系统。频率稳定约束覆盖全过程关键指标,准确刻画多类型资源动态响应特性;电压稳定约束聚焦低稳定裕度节点的长期稳定性,尤其针对高比例可再生能源接入场景。模型充分考虑频率与电压稳定的耦合关系,并通过分段线性化提升求解效率。基于IEEE 9节点和RTS-79系统的算例验证了所提方法的有效性。

English Abstract

The growing integration of converter-based renewable energy sources (RESs) and the retirement of conventional units are pushing modern power systems closer to their stability limits. Imposing stability constraints in scheduling models is crucial to maintaining secure operations. This paper develops a novel voltage and frequency stability constrained unit commitment (UC) model for power systems with heterogeneous regulation resources, including synchronous generators (SGs), synchronous condensers, condenser retrofitted SGs, and wind power generators with grid-following or grid-forming converters. The frequency stability constraints encompass critical metrics across the entire frequency response process, effectively capturing the unique dynamics of diverse resources. The voltage stability constraints prioritize the long-term stability of buses with low stability margins, particularly those heavily penetrated by RESs. Furthermore, the proposed model captures the inherent coupling between frequency and voltage stability, offering extensibility for broader applications. To ensure computational efficiency, nonlinear terms in the constraints are linearized using a piecewise linearization algorithm. The proposed two-stage UC model optimizes operational costs while maintaining system stability. Case studies on the modified IEEE 9-bus system and the IEEE RTS-79 system validate the effectiveness of the proposed method.
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SunView 深度解读

该研究对阳光电源的储能和光伏产品线具有重要指导意义。文中提出的异质调节资源协调控制方法,可直接应用于ST系列储能变流器的GFM控制优化,提升PowerTitan储能系统的电网支撑能力。电压-频率耦合稳定性分析方法可用于SG系列光伏逆变器的GFL控制改进,特别是在高渗透率场景下的并网稳定性。研究成果有助于提升阳光电源产品在弱电网、高可再生能源接入等极限工况下的运行可靠性,对完善iSolarCloud平台的稳定性评估功能也具有参考价值。建议重点关注文中的多类型资源动态响应特性建模方法,用于优化储能-光伏混合系统的协调控制策略。