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风电变流技术 调峰调频 ★ 5.0

风电场多时间尺度协调控制以支持电力系统运行

Multi-Timescale Coordinated Control of Wind Power Plant for Supporting Power System Operation

作者 Junkai Huang · Yan Xu
期刊 IEEE Transactions on Power Systems
出版日期 2024年4月
技术分类 风电变流技术
技术标签 调峰调频
相关度评分 ★★★★★ 5.0 / 5.0
关键词 风力发电厂 频率调节支持 多时间尺度协调控制 风力发电机 减载方法
语言:

中文摘要

摘要:人们越来越期望风力发电厂(WPPs)具备可调度性,并提供频率调节支持(FRS)以保障电力系统运行。然而,风能固有的间歇性和多变性使得同时实现这些目标颇具挑战。本文提出了一种考虑采用不同减载方法的风力发电机组(WTGs)响应特性的多时间尺度协调控制框架。(1)在分钟级时间尺度上,为解决风电波动问题,利用风速预测结果对采用基于超速和变桨控制减载方法的风力发电机组进行协调,以在跟踪调度指令和预留调节备用之间实现平衡。同时,鉴于采用超速减载方法的风力发电机组具有更优的频率调节性能,优先预留其快速备用。(2)在秒级时间尺度上,为提高风力发电厂的动态性能,提出了一种功率分配策略,将一次和二次频率调节信号进行分解,并根据风力发电机组的响应特性在各机组间进行分配。案例研究验证了所提方法的有效性。

English Abstract

Wind power plants (WPPs) are increasingly expected to be dispatchable and provide frequency regulation support (FRS) to support power system operation. However, the inherent wind power intermittency and variety make it challenging to achieve these goals simultaneously. This paper proposes a multi-timescale coordinated control framework considering the response characteristics of wind turbine generators (WTGs) using different deloading methods. (1) In the minute-level timescale, to address wind fluctuation issues, wind speed prediction results are used to coordinate WTGs using overspeed and pitch control-based deloading methods for balancing between tracking dispatch commands and preserving regulation reserve. Meanwhile, the fast reserve from WTGs using the overspeed deloading method is preserved priorly, considering their better frequency regulation performance. (2) In the second-level timescale, to improve the dynamic performance of a WPP, a power sharing strategy is proposed, where primary and secondary frequency regulation signals are decomposed to be shared among WTGs according to their response characteristics. Case studies validate the effectiveness of the proposed method.
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SunView 深度解读

该研究的多时间尺度协调控制策略对阳光电源储能与风电产品线具有重要参考价值。特别是其超短期预测与储能协同的思路,可直接应用于ST系列储能变流器的调频算法优化,提升PowerTitan储能系统的一次调频性能。同时,该控制策略的有功功率动态分配方法也可移植到SG系列风电变流器的GFM控制中,增强其并网支撑能力。建议在现有VSG控制基础上,融合该文的多时间尺度协调机制,进一步提升阳光电源新能源并网产品的调频性能与系统稳定性支撑能力。