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Implementation of internal model based control and individual pitch control to reduce fatigue loads and tower vibrations in wind turbines

机译:基于内部模型的控制和单个俯仰控制的实现,以减少风力涡轮机的疲劳负荷和塔振动

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Vibration control and fatigue loads reduction are important issues in large-scale wind turbines. Identifying the vibration frequencies and tuning dampers and controllers at these frequencies are major concerns in many control methods. In this paper, an internal model control (IMC) method with an adaptive algorithm is implemented to first identify the vibration frequency of the wind turbine tower and then to cancel the vibration signal. Standard individual pitch control (IPC) is also implemented to compare the performance of the controllers in term of fatigue loads reduction. Finally, the performance of the system when both controllers are implemented together is evaluated. Simulation results demonstrate that using only IMC or IPC alone has advantages and can reduce fatigue loads on specific components. IMC can identify and suppress tower vibrations in both fore-aft and side-to-side directions, whereas, IPC can reduce fatigue loads on blades, shaft and yaw bearings. When both IMC and IPC are implemented together, the advantages of both controllers can be used. The aforementioned analysis and comparisons were not studied in literature and this study fills this gap. FAST, AreoDyn and Simulink are used to simulate the mechanical, aerodynamic and electrical aspects of wind turbine. (C) 2018 Elsevier Ltd. All rights reserved.
机译:减少振动控制和疲劳负荷是大型风力涡轮机中的重要问题。识别这些频率的振动频率和调谐阻尼器和控制器是许多控制方法中的主要问题。在本文中,实施具有自适应算法的内部模型控制(IMC)方法以首先识别风力涡轮机塔的振动频率,然后取消振动信号。还实施了标准单个俯仰控制(IPC)以比较控制器的性能,以减少疲劳负载。最后,评估两个控制器一起实现时系统的性能。仿真结果表明,仅使用IMC或IPC单独使用具有优点,可以降低特定组件的疲劳负载。 IMC可以识别和抑制在前后和侧向侧方向上的塔振动,而IPC可以减少叶片,轴和偏航轴承上的疲劳负载。当两个IMC和IPC都在一起实现时,可以使用两个控制器的优点。文学中没有研究上述分析和比较,这项研究填补了这种差距。 FAST,ISODYN和SIMULINK用于模拟风力涡轮机的机械,空气动力和电气方面。 (c)2018年elestvier有限公司保留所有权利。

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