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Wind Turbines Pitch Controller using Constrained Fuzzy-Receding Horizon Control

机译:约束模糊递归水平控制的风力发电机变桨控制器

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This study concentrates on the variable speed/pitch wind-turbines control for the overrated wind-speed. The pitch control is essential in this high wind-speed to adjust the rated output power. The key challenges of designing a pitch control for the wind-turbine are the constraints in the pitch-angle, wind turbine nonlinearities, the wind-speed variations, and the unmeasured states (unstructured model dynamics). From this point of view, this paper proposes constrained fuzzy-receding horizon pitch control to investigate the variable speed wind turbine performance. The proposed controller guarantees the nominal stability and converted to a simple online quadratic optimization problem which required less computational time to be solved. The proposed controller is compared with the gain scheduled-PI controller (which has been used abundantly in the wind-turbine industry) by applying the wind-turbine mathematical model. Additionally, a typical 5MW offshore wind-turbine simulator is employed to verify the results from the mathematical model. The results indicate the effectiveness of the proposed controller over the baseline controller.
机译:该研究集中在可变速度/间距风力涡轮机控制上,用于估高风速。俯仰控制在这种高风速中是必不可少的,以调整额定输出功率。设计风力涡轮机的俯仰控制的关键挑战是间距,风力涡轮机非线性,风速变化和未测量状态(非结构化模型动态)的约束。从这个角度来看,本文提出了受影响的模糊后退地平线沥青控制来研究变速风力涡轮机性能。所提出的控制器保证了标称稳定性并转换为简单的在线二次优化问题,该问题需要较少的计算时间来解决。通过应用风力涡轮机数学模型将所提出的控制器与增益调度-PI控制器(在风力涡轮机行业中使用)进行比较。另外,采用典型的5MW海上风力涡轮机模拟器来验证数学模型的结果。结果表明所提出的控制器在基线控制器上的有效性。

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