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Fuzzy Logic Control Versus Traditional PI Control Applied to a Fixed Speed Horizontal Axis Wind Turbine

机译:模糊逻辑控制与传统PI控制在定速水平轴风力发电机上的应用

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A comparison between three types of control algorithms for a 1.5 MW horizontal axis fixed speed wind turbine is presented. A fuzzy logic proportional integral control (Fuzzy PI), a fuzzy logic control (FLC) and a classical proportional integral (PI) control are tested. A robustness test by adding noise to the wind speed signal is also performed. Design of the proposed Fuzzy PI control algorithm was achieved via tuning with the Ziegler-Nichols approach, using the same methodology for the PI controller tuning with the difference of incorporating a fuzzy logic section. The fuzzy logic section selects the desired PI gains according to wind speed with a smooth control transition. Fuzzy logic control was designed to obtain maximum power extraction at low wind speeds and to limit power extraction at a 1.5 MW nominal power set point. Aerodynamic characteristics of the wind turbine were studied in order to gain a basic understanding of the system dynamics. A 1.5 MW horizontal axis wind turbine model was designed for tuning as well as simulation performance studies. Results demonstrate the effectiveness of all techniques, achieving a controlled power extraction near the nominal value for the three controllers and maximum power extraction in low wind speeds for the Fuzzy PI and FLC control algorithms.
机译:提出了1.5 MW水平轴定速风力发电机的三种控制算法之间的比较。测试了模糊逻辑比例积分控制(Fuzzy PI),模糊逻辑控制(FLC)和经典比例积分(PI)控制。还执行了通过向风速信号添加噪声的鲁棒性测试。所提出的模糊PI控制算法的设计是通过Ziegler-Nichols方法进行调整而实现的,使用相同的方法进行PI控制器调整,但有一个模糊逻辑部分。模糊逻辑部分根据风速选择具有平滑控制过渡的期望PI增益。模糊逻辑控制旨在在低风速下获得最大功率提取,并在1.5 MW额定功率设定点处限制功率提取。为了获得对系统动力学的基本了解,研究了风力涡轮机的空气动力学特性。设计了一个1.5 MW的水平轴风力涡轮机模型,用于调整和仿真性能研究。结果证明了所有技术的有效性,三个控制器的功率提取接近标称值,而模糊PI和FLC控制算法则在低风速下实现了最大功率提取。

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