← 返回
风电变流技术 ★ 5.0

考虑二次频率跌落的高风电渗透率电力系统调度策略

Dispatch Strategy for Power System with High Wind Power Penetration Considering Secondary Frequency Drop

作者 Ji Han · Di Zhang · Longjie Xie · Chengsen Luo · Bohui Jia · Qiaoyi Li
期刊 IEEE Transactions on Power Systems
出版日期 2025年8月
技术分类 风电变流技术
相关度评分 ★★★★★ 5.0 / 5.0
关键词 风力发电 二次频率下降 电力系统调度策略 频率响应模型 调度模型求解
语言:

中文摘要

风力发电(WPG)已成为新能源发电的重要形式之一。然而,大规模风电接入电网对电力系统的频率稳定性构成了重大挑战,尤其是在风电参与调频时可能出现的二次频率下降(SFD)问题。本文提出了一种考虑二次频率下降的电力系统调度新策略。首先,构建了电力系统在不同频率下降阶段的频率响应模型,并采用阶梯备用法对模型进行降阶处理,以获取关键频率指标。其次,通过考虑动态频率约束,建立了电力系统的日前与日内一体化调度模型。最后,针对频率约束中的非线性问题,采用混合整数模型规划和两阶段迭代法对调度模型进行求解。结果表明,与现有的聚焦于二次频率下降的模型相比,所提出的调度方法在基准电网系统和实际电网系统中,使一次频率下降、二次频率下降和稳态频率的最大偏差均降低了约2% - 10%,并使弃风率降低了约4% - 5%。

English Abstract

Wind power generation (WPG) has become one of the prominent forms of new energy generation. However, the large-scale integration of WPG into the grid poses a significant challenge to the frequency stability of the power system, especially with respect to the secondary frequency drop (SFD) that may occur due to WPG's participation in frequency regulation. This paper proposes a new power system dispatch strategy considering SFD. Firstly, the frequency response model of power system is constructed in different stages of frequency drop, and the ladder reserve method is used to reduce the order of the model to get the key frequency indices. Secondly, a day-ahead and intra-day integrated dispatch model of power system is established through considering dynamic frequency constraints. Finally, considering the nonlinearity in the frequency constraints, the dispatch model is solved by mixed integer model programming and the two-stage iterative methods. The results show that, compared with existing SFD-focused models, the proposed dispatch method reduces the maximum deviations of PFD, SFD, and steady-state frequency by approximately 2–10% and lowers WPG curtailment by about 4–5% across both benchmark and real grid systems.
S

SunView 深度解读

该研究对阳光电源储能与风电变流产品线具有重要参考价值。文中提出的频率动态响应优化调度策略,可应用于ST系列储能变流器的GFM控制算法优化,提升储能系统在高风电渗透率场景下的频率支撑能力。具体可优化PowerTitan大型储能系统的VSG控制策略,通过储能快速响应抑制二次频率跌落。同时,该调度策略也可集成到iSolarCloud平台,实现储能与风电的协调优化调度,提高新能源电站整体稳定性。建议在储能产品中增加频率安全约束模块,完善电网支撑功能。