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Partial- or full-power production in WECS: a survey of control and structural strategies

机译:WECS部分或全电力生产:对控制和结构策略的调查

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摘要

The most common controller in wind turbine is the blade pitch angle control in order to get the desired power. Controlling the pitch angle in wind turbines has a direct impact on dynamic performance of the machine and fluctuations in the power systems. The design of a controller that can adapt itself with the system, at any given time, is of crucial importance. To limit the aerodynamic power gained from the wind turbine in the high wind speed areas, different methods are applied on pitch angle. In this paper an extensive literature review on pitch angle control technique in wind turbine has been highlighted. Classical and adaptive controllers, robust control and intelligent control are among the control methods adopted in this study. In comparison of the controllers, although adaptive and robust controllers, with less sensitivity to changes in environmental conditions, outperform the classic controller, the intelligent controller system presents the best performance of the wind turbines through estimating the system variables and appropriate adaptation to changes at the operating point.
机译:风力涡轮机中最常见的控制器是叶片桨距角控制,以获得所需的功率。控制风力涡轮机中的俯仰角直接影响机器的动态性能和动力系统的波动。可以在任何给定时间对系统适应系统的控制器的设计是至关重要的。为了限制从高风速区域的风力涡轮机中获得的空气动力功率,在俯仰角上施加不同的方法。本文突出了风力涡轮机中的俯仰角控制技术的广泛文献综述。经典和自适应控制器,鲁棒控制和智能控制是本研究采用的控制方法。在控制器的比较中,虽然自适应和鲁棒控制器,但对环境条件的变化的敏感性较小,优于经典控制器,但智能控制器系统通过估计系统变量和适当的适应来提高风力涡轮机的最佳性能。操作点。

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