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An Optimal Model-Based Control Technique to Improve Wind Farm Participation to Frequency Regulation

机译:基于模型的最优控制技术可提高风电场对频率调节的参与度

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摘要

This paper presents a model-based control technique to provide the contribution of wind power generators to primary frequency regulation in electric power systems. Models of individual wind power generators and wind farm (WF) as a whole are presented and the proposed control strategy is detailed. It consists of a central controller, a central Kalman filter (KF), and some local KFs, one for each wind turbine. The central controller is disabled in normal operation conditions and its task is to set the power reference for each wind turbine, overwriting the local reference, when a disturbance occurs. Central KF is in charge of estimating the external load variation, while each local KF estimates wind speed and the wind turbines dynamical state. The key feature of this approach is that each wind turbine can react to grid disturbances in a different way, which depends on wind speed as seen by the wind turbine itself and by its dynamical conditions. Real wind data and a large WF connected to the grid in a dedicated simulation environment have been used to test the effectiveness of the proposed control strategy.
机译:本文提出了一种基于模型的控制技术,以提供风力发电机对电力系统一次频率调节的作用。给出了单个风力发电机和风电场(WF)的整体模型,并详细说明了所提出的控制策略。它由一个中央控制器,一个中央卡尔曼滤波器(KF)和一些本地KF组成,每个风力发电机一个。在正常操作条件下,中央控制器将被禁用,其任务是为每个风力涡轮机设置功率参考值,并在发生干扰时覆盖本地参考值。中央KF负责估算外部负载变化,而每个本地KF估算风速和风力发电机的动态状态。这种方法的关键特征是,每个风力涡轮机都可以以不同的方式对电网干扰做出反应,这取决于风力涡轮机本身及其动态条件所看到的风速。在专用的仿真环境中,真实的风数据和连接到电网的大型WF已用于测试所提出的控制策略的有效性。

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