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A frequency tracking semi-active algorithm for control of edgewise vibrations in wind turbine blades

机译:频率跟踪半主动控制风轮机叶片边缘振动的算法

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With the increased size and flexibility of the tower and blades, structural vibrations are becoming a limiting factor towards the design of even larger and more powerful wind turbines. Research into the use of vibration mitigation devices in the turbine tower has been carried out but the use of dampers in the blades has yet to be investigated in detail. Mitigating vibrations will increase the design life and hence economic viability of the turbine blades and allow for continual operation with decreased downtime. The aim of this paper is to investigate the effectiveness of Semi-Active Tuned Mass Dampers (STMDs) in reducing the edgewise vibrations in the turbine blades. A frequency tracking algorithm based on the Short Time Fourier Transform (STFT) technique is used to tune the damper. A theoretical model has been developed to capture the dynamic behaviour of the blades including the coupling with the tower to accurately model the dynamics of the entire turbine structure. The resulting model consists of time dependent equations of motion and negative damping terms due to the coupling present in the system. The performances of the STMDs based vibration controller have been tested under different loading and operating conditions. Numerical analysis has shown that variation in certain parameters of the system, along with the time varying nature of the system matrices has led to the need for STMDs to allow for real-time tuning to the resonant frequencies of the system.
机译:随着塔架和叶片尺寸的增加和灵活性的提高,结构振动正成为限制更大甚至更强大风力涡轮机设计的限制因素。已经进行了在涡轮机塔架中使用减振装置的研究,但是尚未详细研究叶片中的减振器的使用。减轻振动将增加设计寿命,从而延长涡轮机叶片的经济可行性,并允许连续运行并减少停机时间。本文的目的是研究半主动调谐质量阻尼器(STMD)在减少涡轮机叶片的横向振动方面的有效性。基于短时傅立叶变换(STFT)技术的频率跟踪算法用于调节阻尼器。已经开发出一种理论模型来捕获叶片的动态行为,包括与塔架的耦合,以精确地模拟整个涡轮机结构的动力学。由于系统中存在耦合,因此生成的模型由与时间有关的运动方程和负阻尼项组成。基于STMDs的振动控制器的性能已在不同的负载和运行条件下进行了测试。数值分析表明,系统某些参数的变化以及系统矩阵的时变特性导致对STMD的需求,以允许实时调谐到系统的谐振频率。

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