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Transient and Dynamic Control of a Variable Speed Wind Turbine with Synchronous Generator

机译:同步发电机变速风力发电机的暂态和动态控制

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摘要

In this article, a controller for dynamic and transient control of a variable speed wind turbine with a full-scale converter-connected high-speed synchronous generator is presented. First, the phenomenon of drive train oscillations in wind turbines with full-scale converter-connected generators is discussed. Based on this discussion, a controller is presented that dampens these oscillations without impacting on the power that the wind turbine injects into the grid. Since wind turbines are increasingly demanded to take over power system stabilizing and control tasks, the presented wind turbine design is further enhanced to support the grid in transient grid events. A controller is designed that allows the wind turbine to ride through transient grid faults. Since such faults often cause power system oscillations, another controller is added that enables the turbine to participate in the damping of such oscillations. It is concluded that the controllers presented keep the wind turbine stable under any operating conditions, and that they are capable of adding substantial damping to the power system.
机译:在本文中,提出了一种用于具有全比例变频器连接的高速同步发电机的变速风力发电机组的动态和瞬态控制的控制器。首先,讨论了具有全比例变流器连接的发电机的风力涡轮机中传动系统振荡的现象。基于此讨论,提出了一种控制器,该控制器可在不影响风力涡轮机注入电网的功率的情况下衰减这些振荡。由于越来越需要风力涡轮机来接管电力系统的稳定和控制任务,因此所提出的风力涡轮机设计会得到进一步增强,以在瞬态电网事件中支持电网。设计了一种控制器,该控制器可使风力涡轮机克服瞬态电网故障。由于此类故障通常会导致电力系统振荡,因此添加了另一个控制器,该控制器可使涡轮机参与此类振荡的衰减。可以得出的结论是,所提供的控制器可在任何运行条件下保持风力涡轮机稳定,并且它们能够为电力系统增加大量的阻尼。

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