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Modeling and control of a Magnus effect-based airborne wind energy system in crosswind maneuvers

机译:基于MAGNUS效应的空气载气能量系统的建模与控制

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In this paper, a 3-D model of a Magnus effect-based airborne wind energy system adapted from flight dynamics is proposed. The model is derived from first principles where the forces acting on the system are presented. In order to validate our aerodynamic model, a study of lift and drag coefficients is presented for the rotating cylinders in high Reynolds number regime. The proposed 3-D model is validated by simulation, controlling the system in crosswind trajectories. The performance of the system power production is also assessed and compared to a simplified static model.
机译:本文提出了一种三维效应基于飞行动力学的气流风能系统的三维模型。该模型源自介绍作用在系统上的力的第一个原则。为了验证我们的空气动力学模型,在高雷诺数方案中呈现升力和拖曳系数的研究。通过仿真验证所提出的3-D模型,控制跨风轨迹中的系统。还评估了系统电力生产的性能,并与简化的静态模型进行了评估。

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