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Evolutionary Multiobjective Optimization with Fractional Order Integral Objectives for the Pitch Control System Design of Wind Turbines

机译:带有分数阶数整体目标的进化多目标优化,用于风力涡轮机的俯仰控制系统设计

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Evolutionary multiobjective optimization with fractional order objective functions is used for the tuning of three coupled control loops, which are part of the pitch control system of three-bladed, variable-speed, horizontal-axis large-sized wind energy converters. The first control loop is the collective pitch control (CPC). The second one is the active tower damping control (ATDC), which is used to damp tower oscillation due to the pitching activity. Finally, the third one is the active blade tip deflection damping control (ABDC) in the edgewise direction, which is proposed to mitigate blade oscillations. Simulation results by using the software FAST of a 20 MW reference turbine show that the tuning approach yields satisfactory performance for all control loops.
机译:具有分数级客观功能的进化多目标优化用于调谐三个耦合控制环,这是三刃,变速,水平轴大型风能转换器的俯仰控制系统的一部分。第一控制回路是集体俯仰控制(CPC)。第二个是活性塔阻尼控制(ATDC),其由于俯仰活动而被抑制塔振荡。最后,第三个是在边缘方向上的有源叶片尖端偏转阻尼控制(ABDC),其提出用于减轻刀片振荡。通过使用20 MW参考涡轮机快速的软件的仿真结果表明,调谐方法对所有控制回路产生令人满意的性能。

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