← 返回
储能系统技术 储能系统 调峰调频 ★ 5.0

含储能双馈风电场的动态频率响应小信号等效建模

Small Signal Equivalent Modeling for Large ES-Embedded DFIG Wind Farm With Dynamic Frequency Response

作者 Wei Dai · Jun Xu · Hui Hwang Goh · Tonghui Shi · Zhihong Zeng
期刊 IEEE Transactions on Power Systems
出版日期 2024年9月
技术分类 储能系统技术
技术标签 储能系统 调峰调频
相关度评分 ★★★★★ 5.0 / 5.0
关键词 双馈感应发电机 储能 频率响应等效方法 参数识别 大规模风电场
语言:

中文摘要

为解决大规模风电系统仿真中的维数灾问题,简化等效模型成为有效手段。近年来,风电场加装储能以增强对低惯量系统的频率支撑,但现有等效模型未考虑储能作用,难以准确反映双馈风机与储能协同下的频率响应特性。本文提出一种计及储能与双馈风机协调控制的小信号等效建模方法,推导了含储能双馈系统的通用频率响应等效表达式,构建了考虑运行状态变化及储能介入功率突变的多机等效模型,并采用改进的两阶段参数辨识方法获取等效参数,精确复现储能动作前后的频率响应过程。通过双区域四机系统中多个大型风电场验证了所提方法的有效性。

English Abstract

A simplified equivalent model that replaces detailed large-scale wind farms is an effective method for conducting complex simulation analyses and avoiding the dimensional catastrophe problem in power systems. In recent years, wind farms are equipped with the energy storage (ES) for improved primary frequency support action to react to low inertial power systems. Nonetheless, the existing equivalent models disregard the function of the ES, thus failing to capture the frequency response characteristics under the synergistic action of every doubly-fed induction generator (DFIG) and ES. This paper proposes a frequency response equivalent method for ES-embedded DFIG that takes into account coordinated control between ES and DFIG to accurately represent the primary frequency regulation capability. Based on a small signal model analysis, the general equivalent frequency response formula of ES-embedded DFIG system is derived. A multi-machine equivalent model is developed with variable operating states and the power response mutation resulting from ES intervention. To acquire the equivalent parameters of the preceding model, an improved two-stage parameter identification model is proposed to capture the accurate frequency response curve prior to and following ES action. Multiple large-scale wind farms are included in the two-area, four-generator system that validates the proposed method.
S

SunView 深度解读

该储能-双馈风机协同频率响应建模技术对阳光电源PowerTitan储能系统和ST系列储能变流器具有重要应用价值。文章提出的小信号等效模型可直接应用于大规模风储混合电站的控制策略优化,特别是储能介入功率突变时的频率响应特性分析,有助于改进阳光电源储能系统的一次调频和惯量支撑控制算法。两阶段参数辨识方法可集成到iSolarCloud平台,实现风储电站的快速建模与仿真验证,降低现场调试成本。该技术对提升阳光电源储能产品在风电场配套应用中的动态频率支撑性能、优化VSG控制参数整定具有直接指导意义,可增强产品在新型电力系统中的竞争力。