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Integral Variable Structure Fuzzy Adaptive Control for Variable Speed Wind Power System

机译:变速风电系统积分变结构模糊自适应控制

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In order to maximize capture wind power, wind turbine generator needs to tune wind turbine speed according wind. It is difficult to obtain the better dynamic quality and robustness by conventional controller based on mathernatic model due to uncertainty of wind speed and wind direction. An integral variable structure fuzzy adaptive controller is proposed for variable speed wind power system with uncertain model parameters and force disturbances. The control scheme is based on variable structure controller with integral compensation. The uncertainties are approximated based on fuzzy theory. Furthermore, fuzzy adaptive method is applied to regulate the gain of switch control variable in order to eliminate the chattering phenomenon that is inherent to variable structure system. The stability of the proposed controller is proved using Lyapunov method. Simulation results indicate that the strong robustness and better tracking performance can be achieved.
机译:为了最大化捕获风电,风力涡轮机发生器需要根据风调谐风力涡轮机速度。由于风速和风向的不确定,难以基于Mathernatic模型获得更好的动态质量和鲁棒性。建议具有不确定模型参数的变速风电系统的积分变量结构模糊自适应控制器和力干扰。控制方案基于具有整体补偿的可变结构控制器。不确定性基于模糊理论近似。此外,应用模糊自适应方法来调节开关控制变量的增益,以消除可变结构系统固有的抖动现象。使用Lyapunov方法证明了所提出的控制器的稳定性。仿真结果表明,可以实现强大的鲁棒性和更好的跟踪性能。

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