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SSR damping in wind farms using observed-state feedback control of DFIG converters

机译:使用DFIG转换器的观测状态反馈控制的风电场中的SSR阻尼

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This paper studies sub-synchronous resonance (SSR) in doubly-fed induction generator (DFIG)-based wind farms. The paper first briefly reviews the main types of the SSR that may occur in DFIG wind farms, namely: (1) induction generator effect (SSIGE), (2) torsional interactions (SSTI), and (3) control interactions (SSCI). It is shown that the power system is highly unstable due to the SSR mode. Therefore, a supplementary SSR damping controller (SSRDC) is designed for the grid-side converter (GSC) controller of the DFIG. The SSRDC is designed using an observer-based-controller tuned through an optimal quadratic technique. Model reduction is applied to the full model of the studied power system in order to obtain a lower order model to make the SSRDC design simpler and more practical. The IEEE first benchmark model, modified to include a 100 MW DFIG-based wind farm, is employed as a case study. In this work, MATLAB/SIMULINK is used for eigenvalue analysis and PSCAD/EMTDC for time-domain simulations, respectively. (C) 2015 Elsevier B.V. All rights reserved.
机译:本文研究了基于双馈感应发电机(DFIG)的风电场中的亚同步谐振(SSR)。本文首先简要回顾了双馈风力发电场中可能发生的SSR的主要类型,即:(1)感应发电机效应(SSIGE),(2)扭转相互作用(SSTI)和(3)控制相互作用(SSCI)。结果表明,由于SSR模式,电力系统非常不稳定。因此,为DFIG的电网侧转换器(GSC)控制器设计了一个辅助SSR阻尼控制器(SSRDC)。 SSRDC是使用基于观察器的控制器设计的,该控制器通过最佳二次技术进行了调整。模型约简应用于研究的电力系统的完整模型,以获得低阶模型,从而使SSRDC设计更简单,更实用。作为案例研究,采用了IEEE第一基准模型,该模型经过修改以包括基于100 MW DFIG的风电场。在这项工作中,MATLAB / SIMULINK分别用于特征值分析,而PSCAD / EMTDC分别用于时域仿真。 (C)2015 Elsevier B.V.保留所有权利。

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