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Damping of Torsional Vibrations in a Type-IV Wind Turbine Interfaced to a Grid-Forming Converter

机译:IV型风力涡轮机中的扭转振动接口到网格形成转换器

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This paper introduces a Type-IV wind turbine interfaced to a grid-forming converter. In order to retain the stable operation of a wind turbine in the presence of a grid-forming control, the classical control of a back-to-back converter has to be modified. The modification of this control creates a strong link between a wind turbine and grid dynamics. From the grid side perspective, this link allows provision of the inertial response from a wind turbine during transient events. On the wind turbine side, this coupling causes the appearance of the torsional vibrations within the drivetrain structure. These vibrations are then propagated to the grid as power oscillations. As a result, there is a negative impact on the mechanical components of a wind turbine as well as on the power system operation. In this work, a solution is introduced in order to suppress the undesired vibrations by applying a damping technique to the control of a back-to-back converter combined with a grid-forming control. Based on the conducted analysis, the addition of a damping filter results in the mitigation of torsional vibrations.
机译:本文介绍了IV型风力涡轮机,其接口到栅格形成转换器。为了在形成网格控制的情况下保留风力涡轮机的稳定运行,必须改变背对背转换器的经典控制。该控制的修改在风力涡轮机和网格动态之间产生了强大的联系。从网格侧的角度来看,该链接允许在瞬态事件期间提供来自风力涡轮机的惯性响应。在风力涡轮机侧,该耦合导致动力传动系统结构内的扭转振动的外观。然后将这些振动作为电力振荡传播到电网。结果,对风力涡轮机的机械部件以及电力系统操作存在负面影响。在这项工作中,引入了一种解决方案,以抑制不希望的振动,通过将阻尼技术应用于与网格形成控制结合的背对背转换器进行控制来抑制不希望的振动。基于进行的分析,添加阻尼过滤器导致扭转振动的减轻。

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