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Wind farm node connected DFIG/back-to-back converter coupling transient model for grid integration studies

机译:风电场节点连接的DFIG /背对背转换器耦合瞬态模型,用于电网集成研究

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This paper presents the explicit electromagnetic transient model of a Doubly Fed Induction Generator (DFIG), that includes its coupling with the back-to-back converter, when the generator/converter set is connected to the wind farm's Thevenin equivalent, as seen from DFIG's terminals. Besides that, DFIG's grid side converter control system is defined in detail, so that expressions for the direct tuning of all compensators are provided. The overall electromechanical wind generator model includes 24 state variables: four mechanical, eleven electrical, and nine more - one for each controller - associated to the control system. The developed model is complemented with a state machine that implements the sequential control among the different stages that define its operational modes. Simulation and experimental results show that the developed model is able to predict the behaviour of the generator in short and long term scenarios. (C) 2015 Elsevier Ltd. All rights reserved.
机译:本文介绍了双馈感应发电机(DFIG)的显式电磁瞬态模型,其中包括当发电机/转换器组连接到风电场的戴维宁等效装置时,它与背靠背转换器的耦合,如从DFIG的终端。除此之外,还详细定义了DFIG的电网侧变频器控制系统,从而提供了用于直接调节所有补偿器的表达式。整个机电式风力发电机模型包括24个状态变量:与控制系统相关的四个机械变量,十一个电气变量以及另外九个变量-每个控制器一个。所开发的模型补充有状态机,该状态机在定义其操作模式的不同阶段之间执行顺序控制。仿真和实验结果表明,所开发的模型能够预测发电机在短期和长期情况下的行为。 (C)2015 Elsevier Ltd.保留所有权利。

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