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A Model Based Control methodology combining Blade Pitch and Adaptive Trailing Edge Flaps in a common framework

机译:基于模型的控制方法将刀片间距和自适应后缘襟翼结合在一个通用框架中

摘要

This work investigates how adaptive trailing edge flaps and classical blade pitch can work in concert using a model-based state space control formulation. The trade-off between load reduction and actuator activity is decided by setting different weights in the objective function used by the model-based controller. The combined control approach allow to achieve higher load alleviations, furthermore, in the presence of e.g. deterioration of an actuator, it enables an online re-tuning of the workload distribution of blade pitch and trailing edge flaps, thus potentially increasing the smart rotor reliability.
机译:这项工作研究了自适应后缘襟翼和经典叶片桨距如何使用基于模型的状态空间控制公式协同工作。通过在基于模型的控制器使用的目标函数中设置不同的权重,可以确定负载减少和执行器活动之间的权衡。此外,组合控制方法还允许在例如电动机的存在下实现更高的负载减轻。由于执行器性能下降,因此可以在线重新调整桨距和后缘襟翼的工作量分布,从而有可能提高智能转子的可靠性。

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