利用提升式重复控制抑制实验性“智能”转子部分的周期性风扰动

I. Houtzager, J. Wingerden, M. Verhaegen
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引用次数: 4

摘要

针对具有重复和非重复扰动分量的多输入多输出线性系统,提出了一种重复控制方法,用于实时抑制周期性风扰动。这种新颖的重复控制器可以学习固定转速风力涡轮机和额定转速以上的变速风力涡轮机的周期性风扰动,我们将在一个实验性的“智能”转子测试部分进行演示。“智能”转子是一种转子,其中叶片配备了许多控制装置,结合适当的传感器和控制器,可以局部改变叶片上的升力剖面。在额定转速以上运行的风力涡轮机的转速将在定义的参考转速周围变化,因此给出了在周期内对不匹配的重复控制器进行鲁棒化的方法。重复控制器的设计被表述为一个提升的线性随机输出反馈问题,该问题可以应用成熟的离散线性控制技术。在周期扰动变化相对缓慢的情况下,该控制方法可以显著降低“智能”转子试验段的结构振动。“智能”执行器的额外磨损成本很小,因为控制器主要侧重于减少周期性干扰,从而产生平滑的控制动作。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Rejection of periodic wind disturbances on an experimental “smart” rotor section using lifted repetitive control
A repetitive control method is presented that is implemented in real-time for periodic wind disturbance rejection for linear systems with multi inputs and multi outputs and with both repetitive and non-repetitive disturbance components. The novel repetitive controller can learn the periodic wind disturbances for fixed-speed wind turbines and variable-speed wind turbines operating above-rated and we will demonstrate this on an experimental “smart” rotor test section. The “smart” rotor is a rotor where the blades are equipped with a number of control devices that locally change the lift profile on the blade, combined with appropriate sensors and controllers. The rotational speed of wind turbines operating above-rated will vary around a defined reference speed, therefore methods are given to robustify the repetitive controllers for a mismatch in the period. The design of the repetitive controller is formulated as a lifted linear stochastic output-feedback problem on which the mature techniques of discrete linear control may be applied. With relatively slow changing periodic disturbances it is shown that this control method can significantly reduce the structural vibrations of the “smart” rotor test section. The cost of additional wear and tear of the “smart” actuators are kept small, because a smooth control action is generated as the controller mainly focuses on the reduction of periodic disturbances.
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