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On the optimal tuning of individual pitch control for horizontal-axis wind turbines

机译:关于水平轴风力发电机的单个变桨控制的最佳调整

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摘要

Individual pitch control has proved capable of reducing loads on the blades and shaft of a horizontal-axis wind turbine, at the price of a potentially substantial increase in actuator activity. With accurate tuning of the control parameters, the overall performance can be satisfactorily balanced, but a manual tuning procedure often proves unbearably costly and the solution found may be far from optimal. This study tries to explore the feasibility of an optimal approach to the problem of tuning of individual pitch control, by mapping reasonable cost functions with respect to some parameters of interest in control design. The analysis is carried out by considering a possible individual pitch control implementation, tested in a virtual environment on a realistic testbed. The merit functions are also analyzed visually, in order to easily understand the effects of the various design parameters on the positions and quality of the respective optima. In a later stage, results of complete optimization runs are presented, and the approach is critically discussed.
机译:事实证明,单独的变桨控制能够减少执行器活动可能大幅增加的代价,从而减轻水平轴风力涡轮机的叶片和轴上的负载。通过精确调整控制参数,可以使整体性能达到令人满意的平衡,但是手动调整过程通常证明成本高昂,而且找到的解决方案可能远非最佳。本研究试图通过针对控制设计中感兴趣的某些参数映射合理的成本函数,探索针对单个变桨控制的优化问题的最佳方法的可行性。通过考虑可能的单个变桨控制实现方式进行分析,并在虚拟环境中的真实测试台上进行测试。为了直观地了解各种设计参数对各个最佳位置和质量的影响,还对可视功能进行了可视化分析。在稍后的阶段中,将介绍完整优化运行的结果,并对方法进行严格的讨论。

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