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首页> 外文期刊>Research journal of applied science, engineering and technology >Reduction of Wind Turbine Torque Fluctuation Using Individual Pitch Control Based on Edgewise Moment
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Reduction of Wind Turbine Torque Fluctuation Using Individual Pitch Control Based on Edgewise Moment

机译:基于边沿矩的单桨距控制降低风力发电机转矩波动

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In order to eliminate the nonuniform force on the wind rotor caused by wind shear, tower shadow and turbulence and smooth the torque fluctuation of the wind turbine and the unbalanced loads on the wind turbine, a new individual pitch control strategy based on edgewise moment using single neuron PID controller is proposed. That is, the presented control strategy directly controls the blade edgewise moment generated by aerodynamic force. At the same time, to simulate the wind turbine loads, a dynamic model of three-bladed upwind horizontal axis wind turbine is built. Thus, the influence rules of the wind turbine torque fluctuation are deduced at length. Finally, to verify the effectiveness of the proposed individual pitch control system with the single neuron PID controller, the 2MW wind turbine generator system is modeled and simulated. The performance of the controller is illustrated its capability of not only reducing the wind turbine fluctuation, but also smoothing the fluctuation of the flapwise moment, the yaw moment and the tilt moment.
机译:为了消除风切变,塔影和湍流对风轮产生的不均匀力,并消除风轮机的转矩波动和风轮机上的不平衡负载,基于单边沿矩的单桨距控制策略提出了神经元PID控制器。即,提出的控制策略直接控制由空气动力产生的叶片沿边的力矩。同时,为了模拟风力发电机的负荷,建立了三叶片逆风水平轴风力发电机的动力学模型。因此,从长度上推导了风力涡轮机转矩波动的影响规则。最后,为了验证所提出的带有单个神经元PID控制器的单个变桨控制系统的有效性,对2MW风力发电机系统进行了建模和仿真。示出了控制器的性能,该控制器不仅具有减小风力涡轮机波动的能力,而且还使风门襟翼力矩,偏航力矩和倾斜力矩的波动平滑。

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