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Damping of Torsional Vibrations in a Variable-Speed Wind Turbine

机译:变速风力涡轮机中扭振的阻尼

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摘要

Torsional dampers are employed in wind turbines to damp vibrations in the drive-train. The conventional design is based on band-pass filters (BPF); however, its effectiveness can be compromised due to parametric uncertainty. To restore the performance of the damper, it is a common practice to re-tune it during the commissioning of wind turbines. To overcome this shortcoming, a model-based torsional damper was designed and its performance compared to the conventional approach when subjected to model uncertainty. A stability analysis was conducted and simulations were performed in Simulink. A real-time hardware-in-the-loop experiment was carried out, with experimental and simulation results showing good agreement. The proposed model-based torsional vibration damper showed a superior performance over the conventional BPF-based approach. Results also showed that the model-based damper can eliminate the need for retuning procedures associated with BPF-based designs.
机译:扭转阻尼器用于风力涡轮机中,以阻尼传动系统中的振动。常规设计基于带通滤波器(BPF)。但是,由于参数不确定性,其有效性可能会受到影响。为了恢复风门的性能,通常的做法是在风力涡轮机调试期间对其进行重新调整。为了克服这个缺点,设计了一种基于模型的扭振阻尼器,并且在遭受模型不确定性时,其性能与传统方法相比有所提高。进行了稳定性分析,并在Simulink中进行了仿真。进行了实时的硬件在环实验,实验与仿真结果吻合良好。所提出的基于模型的扭转减振器表现出优于常规基于BPF的方法的性能。结果还表明,基于模型的阻尼器可以消除与基于BPF的设计相关的重新调整过程的需求。

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