A Dynamic Weighted Aggregation Equivalent Modeling Approach for the DFIG Wind Farm Considering the Weibull Distribution

Yuhao Zhou, Long Zhao, Igor B. M. Matsuo, Weijen Lee
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引用次数: 6

Abstract

The developing process of the aggregated dynamic equivalent model (DEM) for wind farms could be less computational and more efficient compared with the multimachine DEM, but less accurate when wind speed differences exist inside the wind farm. In addition, the wind speed differences contributes to the different activation patterns of the crowbar systems. Therefore, a dynamic weighted aggregation modeling approach is proposed in this paper to improve the applicability of the aggregated DEM. Firstly, the Gaussian density distance clustering algorithm is applied to segment the wind speed power curve into different zones such that each segmented zone is corresponded to one equivalent aggregated machine. Then the dynamic weighted aggregation equivalent model could be developed based on the conventional aggregated DEM, where the weighting factors for each generator are calculated according to the Weibull distribution of wind speeds. Different scenarios are simulated to analyze the applicability of the proposed dynamic weighting equivalent model. The simulation results show the effectiveness of the proposed method.
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考虑威布尔分布的DFIG风电场动态加权聚集等效建模方法
与多机动态等效模型相比,风电场综合动态等效模型的计算量更少,效率更高,但当风电场内部存在风速差异时,其计算精度较低。此外,风速的不同也导致了撬棍系统的不同激活模式。为此,本文提出了一种动态加权聚合建模方法,以提高聚合DEM的适用性。首先,采用高斯密度距离聚类算法将风速功率曲线分割成不同的区域,每个区域对应一台等效的聚合机;然后在传统聚合DEM的基础上建立动态加权聚合等效模型,根据风速的威布尔分布计算各发电机的权重因子。通过对不同场景的仿真,分析了所提出的动态加权等效模型的适用性。仿真结果表明了该方法的有效性。
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