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Minimax Optimization of Fatigue Loads in a Wind Farm and its Realization Via Sliding Mode Controller of Wind Turbines

机译:风力电池疲劳负荷疲劳载荷的极限优化及风力发电机滑动模式控制器实现

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Operation optimization of a wind farm with robust fatigue load minimization is considered. Since wind turbines are installed as a firm in a restricted area, their interferences cause their mechanical fatigue loads. Thus their maintenance cost can be managed via fatigue load reduction. In this paper, this issue is solved by an optimization problem which minimizes the maximum fatigue load among turbines and gives reference points of pitch angle and tip speed ratio for each turbine. Furthermore, a super-twisting sliding mode controller for each wind turbine is proposed, which is robust to uncertainties of turbine and generator, as well as to electric grid disturbances. The sliding mode controller designs a continuous torque and improves the wind turbine performance by enhancing energy capture and reducing dynamic loads. Then the controller realizes operation on the reference points of each wind turbine. The effectiveness of the method is illustrated through a numerical example.
机译:考虑了具有强大疲劳负荷最小化的风电场的操作优化。由于风力涡轮机在禁区内安装为公司,因此他们的干扰导致其机械疲劳负载。因此,可以通过疲劳负载减少来管理它们的维护成本。在本文中,通过优化问题解决了该问题,其最小化涡轮机中的最大疲劳负载,并为每个涡轮发出俯仰角和尖端速比的参考点。此外,提出了一种用于每个风力涡轮机的超扭转滑动模式控制器,这对于涡轮机和发电机的不确定性以及电网干扰是鲁棒的。滑动模式控制器通过增强能量捕获和减少动态载荷来设计连续扭矩并提高风力涡轮机性能。然后,控制器实现对每个风力涡轮机的参考点的操作。通过数值示例说明该方法的有效性。

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