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Effects of electrical and mechanical parameters on the transient voltage stability of a fixed speed wind turbine

机译:机电参数对定速风力发电机暂态电压稳定性的影响

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In this paper the dynamic behaviour of a wind turbine connected to the grid is examined. The model of the fixed speed wind turbine has been developed with the Simulink simulation tool (Matlab Inc.) It is composed of the induction generator, the shaft system, an aerodynamic model of the wind turbine rotor and the pitch control system. Using this model, a three-phase fault is applied close to the wind turbine and cleared by disconnecting the faulty line. The rigorous implementation of the simulink model allowed the authors to evaluate the exact dependence of various electrical parameters for the induction generator on voltage stability. Furthermore, the effects of wind turbine mechanical construction and of grid parameters on voltage stability are also evaluated and discussed. For each parameter, the terminal voltage and the generator rotor speed for different fault-clearing times are drawn. Finally, the terminal voltage and the generator rotor speed obtained for a fifth order model of the induction generator are compared with those obtained for a third order model. The differences between the two models are discussed. The results will help to understand transient stability phenomena in wind farms.
机译:在本文中,研究了连接到电网的风力涡轮机的动态行为。使用Simulink仿真工具(Matlab Inc.)开发了定速风力涡轮机的模型,该模型由感应发电机,轴系统,风力涡轮机转子的空气动力学模型和桨距控制系统组成。使用该模型,在风力涡轮机附近施加了三相故障,并通过断开故障线路来清除了该故障。 simulink模型的严格实现使作者能够评估感应发电机的各种电参数对电压稳定性的确切依赖性。此外,还评估和讨论了风力发电机机械结构和电网参数对电压稳定性的影响。对于每个参数,绘制了不同故障清除时间的终端电压和发电机转子速度。最后,将感应发电机的五阶模型获得的端电压和发电机转子速度与三阶模型获得的端电压和发电机转子速度进行比较。讨论了两种模型之间的差异。结果将有助于了解风电场的暂态稳定现象。

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