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Pitch control dynamic study of isolated wind turbine based self-excited induction generator under realistic wind speed profiles

机译:现实风速曲线下基于隔离风力发电机的自激感应发电机的变桨控制动态研究

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This paper studies performance of a stand-alone self-excited induction generator (SEIG) has driven by a variable speed wind turbine. The paper also provides an efficient pitch angle control technique for wind speeds above the rated speed. The control strategy discussed for the wind turbine side. The main goal of the paper is the dynamic study of SEIG under realistic and different wind speeds. A general method for generating realistic wind speed is also introduced in this paper. Attention focused on the effect of the wind speed on the generated voltage, pitch angle and the angular speed of the rotor. The models for real wind speed, the wind turbine, PI pitch angle controller and the SEIG discussed and simulated by using the MATLAB program based on the dynamic equations of each model. The effect of the wind speed variation on the steady state generated voltage and the rotor speed studied. This control provides a constant output voltage, frequency, and rotor angular speed. The control system proved that it is stable and reliable for different wind speeds up to 26 m/s which capable of delivering to variable loads.
机译:本文研究了由变速风力涡轮机驱动的独立自励感应发电机(SEIG)的性能。本文还为风速高于额定速度提供了一种有效的桨距角控制技术。讨论了风力涡轮机侧的控制策略。本文的主要目标是在实际和不同风速下对SEIG进行动态研究。本文还介绍了一种生成实际风速的通用方法。注意集中在风速对所产生的电压,桨距角和转子的角速度的影响上。通过使用MATLAB程序,基于每个模型的动力学方程,对实际风速模型,风力涡轮机,PI俯仰角控制器和SEIG进行了讨论和仿真。研究了风速变化对稳态产生电压和转子速度的影响。该控制提供恒定的输出电压,频率和转子角速度。该控制系统证明,它对于不同的风速(高达26 m / s)稳定且可靠,能够提供可变负载。

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