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Sliding mode robust control of the horizontal wind turbines with model uncertainties

机译:具有模型不确定性的水平风力发电机的滑模鲁棒控制

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Wind turbines are generally controlled based on two control objectives: turbine protection and the generation of acceptable power for the grid. In this paper, a robust control strategy is presented for switching between various operating modes of the turbine. The rotor angular speed is hold below the allowable speed in all operation time. It is also attempted to catch a constant power in a desirable amount during the most of operation time. For the elimination of model/environmental uncertainties, sliding mode controllers are used. For the objective of power tracking, the stability of sliding mode controller is proved for a set of sliding surfaces. Advantages and disadvantages of the selected sliding surfaces are discussed. Moreover, some operating conditions of the wind turbine are investigated to evaluate the effectiveness of the proposed control technique. Implementation of the above proposed control law in its related electronic circuit of the wind turbine will be considered as the future stage of the current research.
机译:通常基于两个控制目标来控制风力涡轮机:涡轮机保护和电网可接受功率的产生。在本文中,提出了一种鲁棒的控制策略,可在涡轮机的各种运行模式之间进行切换。转子角速度在所有运行时间内均保持在允许速度以下。还尝试在大部分操作时间内以所需的量捕获恒定功率。为了消除模型/环境的不确定性,使用了滑模控制器。出于功率跟踪的目的,证明了一组滑动表面的滑模控制器的稳定性。讨论了所选滑动面的优缺点。此外,研究了风力涡轮机的一些运行条件,以评估所提出的控制技术的有效性。在风力涡轮机的相关电子电路中实施以上提出的控制定律将被视为当前研究的未来阶段。

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