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Real-time monitoring and structural control of a wind turbine using a rocking system

机译:使用摇摆系统的风力涡轮机的实时监测与结构控制

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The design of a semi-active (SA) control system to mitigate wind induced structural demand to high wind turbine towers is discussed herein. A variable restraint at the base, able to modify in real time its mechanical properties according to the instantaneous response of the tower, is proposed. A special control algorithm has been properly designed to drive MR dampers. It requires the tower is equipped with sensors for measurement of displacements and stresses. The real-time monitoring of the tower response is needed in order to make the SA system works in the sense of mitigating the structural demand against wind gust. A finite element model of a wind turbine model has been adopted to perform several numerical simulations. On the basis of these results, the optimal calibration of the controller has been found as the one allows to achieve different and conflicting, structural goals.
机译:本文讨论了用于减轻风引起的风力涡轮机塔的半主动(SA)控制系统的设计。基座的可变约束,能够根据塔的瞬时响应实时修改其机械性能。特殊控制算法已正确设计用于驱动MR DAMPERS。它要求塔楼配有传感器,用于测量位移和应力。需要对塔响应的实时监控,以使SA系统在减轻对风阵风的结构需求的意义上工作。采用了风力涡轮机模型的有限元模型来执行几个数值模拟。在这些结果的基础上,已发现控制器的最佳校准作为允许实现不同和相互矛盾的结构目标。

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