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Mitigation of Fatigue Loads Using Individual Pitch Control of Wind Turbines Based on FAST

机译:基于FAST的风力发电机单桨距控制减轻疲劳负荷

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With the increase of wind turbine dimension and capacity, the wind turbine structures are subjected to prominent loads and fatigue which would reduce the lifetime of wind turbines. Individual pitch control (IPC) is used in this paper to attenuate the blade root bending moment and the tilt and yaw moments and fatigue. The loading transfer from rotational coordinate system to the fixed coordinate system of the wind turbine is analyzed. In order to make the simulation results more reliable, the wind turbine code FAST is applied to doubly fed induction generator (DFIG) based power system to demonstrate the correctness of individual pitch control strategy. The performance of the proposed control method is tested and compared with that using collective pitch control (CPC), demonstrating the effectiveness of individual pitch control of wind turbines.
机译:随着风力涡轮机尺寸和容量的增加,风力涡轮机结构承受显着的载荷和疲劳,这将缩短风力涡轮机的寿命。本文使用单独的变桨控制(IPC)来减轻叶片根部弯曲力矩以及倾斜和偏航力矩以及疲劳。分析了风力涡轮机从旋转坐标系到固定坐标系的载荷传递。为了使仿真结果更加可靠,将风力发电机代码FAST应用于基于双馈感应发电机(DFIG)的电力系统,以证明各个变桨控制策略的正确性。测试了所提出的控制方法的性能,并将其与使用集体变桨控制(CPC)的性能进行了比较,证明了风力发电机的单个变桨控制的有效性。

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