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Optimization Control for Flapping Load Mitigation and Output Power Levelling of Wind Turbine

机译:风力涡轮机扑载缓解输出功率调平的优化控制

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Fatigue load affects the secure and stability of wind turbine operation. Flapping load is the main source of fatigue load endured by wind turbine operating above the rated wind speed. In this paper, a novel optimization control method for wind turbine flapping load mitigation and output power leveling is proposed. At first, wind turbine flapping load is analyzed and its calculation model is presented. Secondly, principle of the proposed control method is presented. Considering on coupling between flapping load and output power, a multi-objective optimization model and differential evolution based flapping load optimization controller are then designed. Additional PID-based output power leveling controller is employed to keep the output power leveling around the rated power. Finally, the effectiveness of the proposed control method is demonstrated by NREL 5MW wind turbine simulations.
机译:疲劳负荷影响风力涡轮机操作的安全稳定性。拍打负荷是由风力涡轮机保持在额定风速上方的疲劳负荷的主要来源。本文提出了一种新型优化控制方法,用于风力涡轮机拍压负载缓解和输出功率调平。首先,分析了风力涡轮机拍摄负载,并提出了其计算模型。其次,提出了所提出的控制方法的原理。考虑拍摄负载和输出功率之间的耦合,设计了一种多目标优化模型和基于差分演化的拍摄负载优化控制器。采用附加的基于PID的输出功率电平控制器来保持输出功率调平围绕额定功率。最后,通过NREL 5MW风力涡轮机模拟证明了所提出的控制方法的有效性。

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