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DAC to mitigate the effect of periodic disturbances on drive train using collective pitch for variable speed wind turbine

机译:使用集体螺距为变速风力发电机减轻DAC对传动系统的周期性干扰的影响

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DAC is a linear control technique used to mitigate the effect of disturbance on the plant. It is a superposition of full state feedback and disturbance feedback. This paper presents a control technique based on Disturbance Accommodation Control (DAC) to reduce fatigue on drive train generated by wind which is combination of step and periodic disturbances (generated by wind shear and tower shadow) of the turbine for above rated wind speed (Region III). We have presented a wind modeling for wind shear and tower shadow effect for the wind turbine control simulation and also developed a control scheme to mitigate the effect of 3p flicker on drive train. 5MW wind turbine of the National Renewable Laboratories (NREL) is used as research object and results are simulated in MATLAB/Simulink. We designed the controller based on linearized model of the wind turbine generated for above rated wind speed and then tested its performance on the nonlinear model of wind turbine. We have shown a comparison of the results for proportional-integral(PI) and proposed DAC controller tested on nonlinear model of wind turbine. Result shows that our proposed controller shows better mitigation of flicker generated due to 3p effect by using collective pitch control as compared to PI with tower and actuator dynamics.
机译:DAC是一种线性控制技术,用于减轻设备干扰的影响。它是全状态反馈和扰动反馈的叠加。本文提出了一种基于扰动调节控制(DAC)的控制技术,以降低风产生的动力传动系统上的疲劳,风是在高于额定风速(区域)的情况下由涡轮的阶跃和周期性扰动(由风切变和塔影产生)组合而成的III)。我们为风轮机控制仿真提供了风切变和塔影效应的风模型,还开发了一种控制方案来减轻3p闪烁对传动系统的影响。以国家可再生能源实验室(NREL)的5MW风力发电机为研究对象,并在MATLAB / Simulink中对结果进行了仿真。我们基于在额定风速以上时生成的风力涡轮机线性模型设计了控制器,然后在风力涡轮机的非线性模型上测试了其性能。我们已经显示了比例积分(PI)和建议的DAC控制器在风力涡轮机非线性模型上测试的结果的比较。结果表明,与具有塔架和执行器动力学的PI相比,通过使用集体螺距控制,我们提出的控制器可更好地缓解由于3p效应而产生的闪烁。

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