永磁同步发电机全尺寸变流器风电场的通用emt模型

U. Karaagac, J. Mahseredjian, Richard Gagnon, H. Gras, H. Saad, L. Cai, I. Kocar, A. Haddadi, E. Farantatos, Siqi Bu, K. Chan, L. Wang
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引用次数: 40

摘要

公用事业公司在其发电机组中增加风能资源份额方面面临着相当大的压力。随着风能资源份额的增加,由于风力发电机和传统发电机所使用的技术的根本差异,电力系统的动态行为将发生很大变化。与传统发电厂形成鲜明对比的是,风力涡轮机(WTs)和风力发电场(WPs)的建模方式几乎没有标准化。因此,国际上有兴趣为wt和wp提供通用模型(即标准化和公开可用),这些模型能够捕获所有性能方面,就像制造商特定的模型一样好。本文提出了一种基于全尺寸变换器(FSC) WPs的电磁瞬变(EMT)仿真模型,该模型可用于稳定性分析和互连研究。所考虑的拓扑结构使用永磁体同步发电机。虽然集热器网格和FSC wt用它们的聚合模型表示,但WP的总体控制结构被保留。FSC WT和WP控制系统包括非线性和必要的瞬态和保护功能,以准确模拟WPs的瞬态行为。
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A Generic EMT-Type Model for Wind Parks With Permanent Magnet Synchronous Generator Full Size Converter Wind Turbines
Utilities are under considerable pressure to increase the share of wind energy resources in their generation fleet. With the increasing share of wind energy resources, the dynamic behavior of power systems will change considerably due to fundamental differences in technologies used for wind and conventional generators. There is a very little standardization in the ways to model wind turbines (WTs) and wind parks (WPs) in sharp contrast to conventional power plants. Hence, there is an international interest to deliver generic models (i.e. standardized and publicly available) for WTs and WPs that are able to capture all performance aspects as good as manufacturer-specific models. This paper presents an electromagnetic transient (EMT) simulation model for full-size converter (FSC) WT-based WPs that can be used for stability analysis and interconnection studies. The considered topology uses a permanent magnet synchronous generator. Although the collector grid and the FSC WTs are represented with their aggregated models, the overall control structure of the WP is preserved. FSC WT and WP control systems include the non-linearities, and necessary transient and protection functions to simulate the accurate transient behavior of WPs.
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