首页> 外文会议>Recent Advances in Space Technologies, 2009. RAST '09 >Active vibration control of a fully clamped laminated composite plate subjected to impulsive pressure loadings
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Active vibration control of a fully clamped laminated composite plate subjected to impulsive pressure loadings

机译:承受脉冲压力载荷的全夹紧叠层复合板的主动振动控制

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In this numerical study vibrations of a fully clamped composite plate subjected to impulsive pressure loadings are controlled by using piezoelectric patches. Finite element methods are preferred for numerical solutions. For obtaining finite element model of the smart plate structure, semiloof shell finite element including piezoelectric effects is used. Mode summation method is used for reducing the degrees of freedom of the finite element model and state-space equations are obtained from the reduced finite element model for determining appropriate control strategies. Optimal linear quadratic regulator (LQR) approach has been used to determine the feedback gain matrix and vibrations of the plate suppressed successfully.
机译:在此数值研究中,通过使用压电贴片来控制承受脉冲压力载荷的完全夹紧的复合板的振动。对于数值解,首选有限元方法。为了获得智能板结构的有限元模型,使用了包括压电效应的半顶壳有限元。使用模式求和方法来减少有限元模型的自由度,并从简化后的有限元模型中获得状态空间方程,以确定适当的控制策略。最佳线性二次调节器(LQR)方法已用于确定反馈增益矩阵,并成功抑制了板的振动。

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