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LIDAR-assisted wind turbine gain scheduling control for load reduction

机译:LIDAR辅助风力涡轮机增益调度控制,用于减少负载

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A gain-scheduled feedforward controller employing pseudo-LIDAR wind measurement is designed to augment the baseline feedback controller for wind turbine load reduction during above rated operation. The feedforward controller is firstly designed based on a linearised wind turbine model at one specific wind speed, then expanded for full above rated operational envelope with gain scheduling. The wind evolution model is established using the pseudo-LIDAR measurement data which is generated from Bladed using a designed sampling strategy. The combined feedforward and baseline control system is simulated on a 5MW industrial wind turbine model developed at Strathclyde University. Simulation results demonstrate that the gain scheduling feedforward control strategy can improve the rotor and tower load reduction performance for large wind turbines.
机译:采用伪激光测量的增益预定的前馈控制器被设计为在上述额定操作期间增强用于风力涡轮机负载的基线反馈控制器。前馈控制器首先基于一个特定风速的线性风力涡轮机模型设计,然后以增益调度为满载以上的额定操作包络的完整上方。使用伪激光雷达测量数据建立风力演化模型,该数据是使用设计的采样策略从叶片产生的。模拟了在斯特拉斯卡莱德大学开发的5MW工业风力涡轮机模型上模拟了馈电和基线控制系统。仿真结果表明,增益调度前馈控制策略可以改善大型风力涡轮机的转子和塔负载降低性能。

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