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Time-Domain Dynamic Simulation of a Wind Turbine Including Yaw Motion for Power Prediction

机译:包含偏航运动的风力发电机时域动态仿真,用于功率预测

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摘要

A new wind turbine simulation tool for a time-domain dynamic simulation was developed in this study. The tool consists of models of aerodynamics, drive train, generator, actuators, and controllers for pitch and yaw controls. For the wind turbine model, the NREL 5MW reference wind turbine was used Using measured data, the developed tool was applied to predict annual energy production from the wind turbine at four different sites in a complex terrain of Korea. The results were compared with those predicted by a commercial frequency-domain program widely used to predict the annual energy production from a wind turbine. Without a yaw control, the predictions from the proposed tool were close to those from the commercial wind farm design program. Also, from simulations with and without yaw controls, the differences in power predictions were quantified The results of this study suggest that the power production from a wind turbine can be predicted by the proposed time-domain wind turbine simulation tool with a proper yaw algorithm which is not available in commercial frequency-domain programs. Further research is needed to experimentally validate the simulation results with yaw algorithm.
机译:在这项研究中开发了一种用于时域动态仿真的新型风力涡轮机仿真工具。该工具包括空气动力学模型,传动系统,发电机,执行器以及用于俯仰和偏航控制的控制器。对于风力涡轮机模型,使用了NREL 5MW参考风力涡轮机。使用实测数据,将开发的工具用于预测韩国复杂地形中四个不同地点的风力涡轮机的年发电量。将结果与由商业频域程序预测的结果进行比较,该程序广泛用于预测风力涡轮机的年发电量。在没有偏航控制的情况下,所建议工具的预测结果与商业风电场设计程序的预测结果非常接近。此外,从有和没有偏航控制的仿真中,可以量化出功率预测的差异。本研究结果表明,所提出的时域风力涡轮机仿真工具可以使用适当的偏航算法来预测风力发电机的发电量。在商业频域程序中不可用。需要进一步的研究以通过偏航算法实验验证仿真结果。

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