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Wind tunnel setup for experimental validation of wind turbine control concepts under tailor-made reproducible wind conditions

机译:风隧道设置为风力涡轮机控制概念的实验验证在量身定制的风力条件下

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To speed up validation and prototyping of novel control and design concepts in wind energy, wind tunnel experiments should be used in synergy with numerical simulations and field experiments. The paper presents a wind tunnel setup consisting of a scaled wind turbine model MoWiTO and an active grid for generation of tailor-made and reproducible inflow conditions. To demonstrate that the presented experimental setup is suitable for fast validation of advanced control concepts, several control algorithms have been implemented and validated in various inflow conditions, such as turbulent and sheared inflows, and wind gusts. The tested control algorithms include the baseline collective pitch and torque control, individual pitch control for load reduction, and a control algorithms for compensation of static aerodynamic imbalances. All control algorithms resulted in an expected behaviour of the model wind turbine, thus emphasizing that the presented experimental setup can be used for fast and inexpensive testing of control concepts.
机译:为了加快风能的新型控制和设计概念的验证和原型,风隧道实验应在协同作用中使用数值模拟和现场实验。本文提出了一种风洞设置,包括缩放的风力涡轮机模型MOWITO和用于产生量身定制和可重复的流入条件的有源网格。为了证明所提出的实验装置适用于先进控制概念的快速验证,在各种流入条件下已经实施和验证了几种控制算法,例如湍流和剪切流入,以及风阵风。测试的控制算法包括基线集体间距和扭矩控制,用于减压的单独俯仰控制,以及用于补偿静态空气动力学失衡的控制算法。所有控制算法都导致模型风力涡轮机的预期行为,从而强调所提出的实验设置可用于对控制概念的快速和便宜的测试。

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