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Modelling and Control of Variable- speed Multi-pole Permanent Magnet Synchronous Generator Wind Turbine

机译:变速多极永磁同步发电机风力发电机的建模与控制

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Emphasis of this article is on variable-speed pitch-controlled wind turbines with multi-pole permanent magnet synchronous generator (PMSG) and on their extremely soft drive-train shafts. A model and a control strategy for a full back-to-back converter wind turbine with multi-pole PMSG are described. The model comprises submodels of the aerodynamic rotor, the drive-train by a two-mass model, the permanent magnet generator and the full-scale converter system. The control strategy, which embraces both the wind turbine control itself and the control of the full-scale converter, has tasks to control independently the active and reactive powers, to assist the power system and to ensure a stable normal operation of the wind turbine itself. A multi-pole PMSG connected to the grid through a full-scale converter has no inherent damping, and therefore, such configuration can become practically unstable, if no damping by means of external measures is applied. In this work, the frequency converter is designed to damp actively the drive-train oscillations, thus ensuring stable operation. The dynamic performance of the presented model and control strategy is assessed and emphasized in normal operation conditions by means of simulations in the power system simulation tool DlgSILENT.
机译:本文的重点是带有多极永磁同步发电机(PMSG)的变速变桨控制风力涡轮机及其极其柔软的传动轴。描述了具有多极PMSG的全背靠背变流器风力发电机的模型和控制策略。该模型包括空气动力学转子,两个质量模型的传动系统,永磁发电机和满量程转换系统的子模型。该控制策略既包含风机控制本身,也包含满量程转换器的控制,其任务是独立控制有功功率和无功功率,以辅助电力系统并确保风机自身的稳定正常运行。通过满量程转换器连接到电网的多极PMSG没有固有的阻尼,因此,如果不采用外部措施进行阻尼,则这种配置实际上会变得不稳定。在这项工作中,变频器被设计为主动抑制传动系统的振动,从而确保稳定的运行。通过在电力系统仿真工具DlgSILENT中进行仿真,可以评估和强调所提出模型和控制策略的动态性能,并在正常操作条件下对其进行强调。

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