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Wind turbines controllers design based on the super-twisting algorithm

机译:基于超扭曲算法的风机控制器设计

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The continuous increase in the size of wind turbines (WTs) has led to new challenges in the design of novel torque and pitch controllers. Today's WT control design must fulfill numerous specifications to assure effective electrical energy production and to hold the tower vibrations inside acceptable levels of operation. Hence, this paper presents modern torque and pitch control developments based on the super-twisting algorithm (STA) by using feedback of the fore-aft and side-to-side acceleration signals of the WT tower. According to numerical experiments realized using FAST, these controllers mitigate vibrations in the tower without affecting the quality of electrical power production. Moreover, the proposed controllers' performance is better than the baseline controllers used for comparison.
机译:风力涡轮机(WTs)尺寸的不断增加给新型转矩和变桨控制器的设计带来了新的挑战。当今的WT控制设计必须满足众多规格,以确保有效产生电能并将塔架振动保持在可接受的运行水平之内。因此,本文通过利用WT塔的前后和左右加速度信号的反馈,提出了基于超扭曲算法(STA)的现代转矩和变桨控制技术。根据使用FAST实现的数值实验,这些控制器可减轻塔架中的振动,而不会影响电力生产的质量。此外,所提出的控制器的性能要优于用于比较的基线控制器。

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