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Control of Offshore Wind Turbine Simulators for Real Time Using Layering Models

机译:使用分层模型来控制海上风力涡轮机模拟器

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Offshore wind energy has become an increasingly attractive option due to the enormous energy potential associated with the vast offshore areas. The investigation of offshore wind turbines characterized by large-scale involves high performance wind turbine simulator, especially in the case of the development of optimal control strategy. Because of the increasing rotor size and the spatial load variations along the blade, it is necessary to develop new wind speed model, mathematical model of blades and control strategy. In this paper, we propose three-dimensional wind speed model with height according to von Karman power spectrum as the input of the simulator, assuming that the wind model undergoes the same turbulence, which makes it possible to choose correlation wind sources. We use layering technique on the basis of quantizing vortex to receive layering wind speeds as the input of layering mathematical model of the huge blades. These models could be implemented on the structure of the simulator to develop the new control strategy for real time.
机译:由于与广阔的近海地区相关的能源潜力,海上风能已成为越来越有吸引力的选择。近海风力涡轮机的调查涉及高性能风力涡轮机模拟器,特别​​是在开发最佳控制策略的情况下。由于转子尺寸的增加和沿刀片的空间负载变化,因此需要开发新的风速模型,刀片的数学模型和控制策略。在本文中,我们提出了具有高度的三维风速模型,根据von Karman功率谱作为模拟器的输入,假设风模型经历相同的湍流,这使得可以选择相关风源。我们在量化涡旋基础上使用分层技术,以接收分层风速作为巨大刀片的分层数学模型的输入。这些模型可以在模拟器的结构上实现,以便实时开发新的控制策略。

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