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A Modal H Control Methodology for Damage-Tolerant Active Control

机译:容错主动控制的模态H 控制方法

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A novel fault-tolerant control modal methodology applied to mechanical structure vibration subject to damage is here introduced. Considering that structural damage may affect each vibration mode differently, the approach is to control the modes separately, combined with H ∞ technique to achieve satisfactory global performance and robustness even when the structure suffers damage. This is achieved through an appropriate control energy distribution over modes to mitigate the damage effects. The controller is designed to minimize the modal H ∞ norm of the closed-loop system. An equivalent regular H ∞ system is built and solved using linear matrix inequalities approach to find the solution of the modal H ∞ control problem. Then, two similar aluminum beams, one with induced damage, are used to experimentally validate the methodology for damage-tolerant active control. Results show that modal H ∞ control methodology has a significant performance gain over regular H ∞ technique for damage tolerance.
机译:本文介绍了一种适用于遭受损伤的机械结构振动的新型容错控制模态方法。考虑到结构损坏可能会不同地影响每个振动模式,因此方法是分别控制模式,并与H∞技术结合,即使在结构遭受损坏的情况下也可以获得令人满意的整体性能和鲁棒性。这可以通过适当地控制各个模式上的能量分配来减轻损坏的影响来实现。控制器设计为最小化闭环系统的模态H∞范数。建立了一个等效的常规H∞系统,并使用线性矩阵不等式方法进行求解,以找到模态H∞控制问题的解。然后,使用两根类似的铝梁,其中一根引起损伤,以实验方式验证耐损伤主动控制的方法。结果表明,模态H∞控制方法相对于常规的H∞技术,具有较高的性能提高的损伤承受能力。

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