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首页> 外文期刊>Journal of Fluids and Structures >Delayed sub-optimal control for active flutter suppression of a three-dimensional wing
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Delayed sub-optimal control for active flutter suppression of a three-dimensional wing

机译:用于三维翼的主动颤动抑制的延迟次优控制

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In this paper, delayed sub-optimal control based on partial-state feedback for flutter suppression system involving time-delay is investigated, and the effectiveness of the suboptimal controller is compared with the optimal controller based on full-state feedback, Firstly, the aeroservoelastic (ASE) model of the flexible wing with control surfaces is given, and the method to dispose the time-delay in the control input is introduced. Then, the determination of the importance of each state in control feedback is studied using the second-order sensitivity of the performance index with respect to the control gain. Finally, the effectiveness of sub-optimal controller is compared with optimal controller through numerical simulations. Simulation results show that the importance of states can be effectively determined by the second-order sensitivity, and the delayed sub-optimal controller can achieve a control effect quite close to the delayed optimal controller. The order of the delayed suboptimal controller designed in this paper is lower, so it shows more engineering significance. (C) 2018 Elsevier Ltd. All rights reserved.
机译:在本文中,研究了基于涉及时间延迟的颤动抑制系统的部分状态反馈的延迟次优控制,并将次优控制器的有效性与基于全状态反馈的最优控制器进行比较,首先是Aeroservoelastic介绍了具有控制表面的柔性翼的柔性翼的模型,并且介绍了处理控制输入中的时间延迟的方法。然后,使用相对于控制增益的性能指数的二阶灵敏度研究了对控制反馈中的每个状态的重要性。最后,通过数值模拟将次优控制器的有效性与最优控制器进行比较。仿真结果表明,各国的重要性可以通过二阶灵敏度有效地确定,延迟的子最优控制器可以实现相当于延迟最佳控制器的控制效果。本文设计的延迟次优控制器的顺序较低,因此它显示出更多的工程意义。 (c)2018年elestvier有限公司保留所有权利。

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