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Adaptive control algorithm for improving power capture of wind turbines in turbulent winds

机译:改善湍流风轮机功率捕获的自适应控制算法

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The standard wind turbine (WT) control law modifies the torque applied to the generator as a quadratic function of the generator speed (Kω2) while blades are positioned at some optimal pitch angle (β∗). The value of K and β∗ should be properly selected such that energy capture is increased. In practice, the complex and time-varying aerodynamics a WT face due to turbulent winds make their determination a hard task. The selected constant parameters may maximize energy for a particular, but not all, wind regime conditions. Adaptivity can modify the controller to increase power capture under variable wind conditions. This paper present new analysis tools and an adaptive control law to increase the energy captured by a wind turbine. Due to its simplicity, it can be easily added to existing industry-standard controllers. The effectiveness of the proposed algorithm is assessed by simulations on a high-fidelity aeroelastic code.
机译:当叶片以某个最佳桨距角(β*)定位时,标准风力涡轮机(WT)控制定律修改施加到发电机上的转矩,作为发电机速度(Kω2)的二次函数。应该适当选择K和β*的值,以增加能量捕获。实际上,由于风的湍流,WT面临的复杂而时空的空气动力学使它们的确定成为一项艰巨的任务。选定的恒定参数可以使特定但不是全部风况条件下的能量最大化。适应性可以修改控制器,以增加可变风况下的功率捕获。本文提出了新的分析工具和自适应控制律,以增加风力涡轮机捕获的能量。由于其简单性,可以轻松将其添加到现有的行业标准控制器中。通过对高保真气动弹性代码的仿真评估了所提出算法的有效性。

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