Development of an Equivalent Wind-Farm Model for Frequency Regulation

Yuan-Kang Wu, Jyun-Jie Zeng, G. Lu, S. Chau, Yen-Cheng Chiang
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引用次数: 9

Abstract

The operational security of power systems for wind farm integration becomes more important as the penetration of wind generation increases. A wind farm may contain hundreds of wind turbines (WT) and thus the power system simulations based on the complex model of a WT consumes much time. This paper proposes an equivalent wind farm model with the frequency-regulation function. The main research works include the establishment of the generic model of a WT, the development of single-and multi-machine equivalent models for a large wind farm, the clustering of WTs based on the developed nonlinear wake model and the Fuzzy C-means(FCM) clustering algorithm, the integration of the frequency-regulation function into the equivalent wind farm (WF) model, and the validation of the developed equivalent WF model by various operating scenarios. The results demonstrate that the proposed multi-machine equivalent method based on the FCM clustering provides a more accurate model than a single-WT equivalent model. Consequently, the research results provides a solution for simulating a large-scale wind power integration, providing efficient, accurate, and fast steady-state and dynamic analyses.
频率调节等效风电场模型的建立
随着风力发电渗透率的提高,风电场一体化电力系统的运行安全性变得越来越重要。一个风电场可能包含数百个风力发电机,因此基于风力发电机复杂模型的电力系统仿真需要耗费大量时间。本文提出了一个具有调频功能的等效风电场模型。主要研究工作包括建立小波变换的通用模型,建立大型风电场的单机和多机等效模型,基于所建立的非线性尾流模型和模糊c均值(FCM)聚类算法对小波变换进行聚类,将频率调节函数集成到等效风电场(WF)模型中,并通过各种运行场景对所建立的等效风电场模型进行验证。结果表明,基于FCM聚类的多机等效方法比单一wt等效模型提供了更精确的模型。因此,研究结果为大规模风力发电集成的模拟提供了解决方案,提供了高效、准确、快速的稳态和动态分析。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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