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Flutter control of a composite plate with piezoelectric multilayered actuators

机译:具有压电多层执行器的复合板的颤振控制

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Active flutter velocity enhancement scheme is presented for lifting surfaces, employing Linear Quadratic Gaussian based multi-input multi-output controller with multilayered piezoelectric actuators. To numerically test the developed concept, a composite plate wing, surface bonded with eight piezoelectric bender actuators and sensors has been considered. A modal flutter control model is formulated in state-space domain using coupled piezoelectric finite element procedures along with unsteady aerodynamics and optimal control theory. The bending - torsion flutter instability has been actively postponed from 44.13 to 55.5 m/s using the energy imparted by the multilayered piezoelectric actuators. As the power requirement by these actuators is comparatively very low with respect to stack actuators, they can be employed in an integrated form to develop active lifting surfaces for real time applications.
机译:提出了一种用于提升表面的主动颤振速度增强方案,该方案采用了基于线性二次高斯的具有多层压电致动器的多输入多输出控制器。为了对开发的概念进行数值测试,已经考虑了一个复合板翼,其表面结合了八个压电弯曲器致动器和传感器。利用耦合压电有限元程序,非定常空气动力学和最优控制理论,在状态空间域中建立了模态颤振控制模型。利用多层压电致动器提供的能量,弯曲扭转颤振的不稳定性已从44.13主动推迟到55.5 m / s。由于这些致动器相对于堆叠式致动器的功率需求相对较低,因此它们可以以集成形式用于开发实时应用的主动提升表面。

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