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An eigenvector orientation approach for detection and control of panel flutter

机译:特征向量定向方法的面板颤动检测与控制

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A basic eigenvector orientation approach has been used to evaluate the possibility of controlling the onset of panel flutter using a flat panel (wide beam) as an illustrative example. The onset of flutter can be defined as the instance when two modes coalesce. Since eigenvectors for two consecutive modes are usually orthogonal, an indication of the onset of flutter condition can be observed earlier when they start to lose their orthogonality. Using eigenvector orientation method for the prediction of the flutter boundary (indicated by a gradual loss of orthogonality between two eigenvectors) was developed in a previous study and thus can provide a 'lead time' for possible flutter control. In this study, a basic simple beam element is used to model the panel (wide beam). As a first step, piezoelectric layers are assumed to be bonded on the top and bottom surface of the panel to provide counter-bending moments at joints between elements. The standard linear quadratic control theory is used for controller design and full state feedback is considered for simplicity. The controllers are designed to modify the system stiffness matrix in such a way to re-stabilize the system at the onset of flutter; as a result, flutter occurrence is offset to higher flutter speed. Controllers based on different control objectives are considered and the effects of control moment locations are studied as well. Potential applications of this basic method can be straightforwardly applied to plates and shells of laminated composites using finite element method.
机译:基本的特征向量定向方法已用于评估使用平板(宽光束)作为示例说明的控制面板颤动发作的可能性。颤动的开始可以定义为两种模式合并时的实例。由于两个连续模式的特征向量通常是正交的,因此当它们开始失去正交性时,可以更早地观察到颤动条件的开始。在先前的研究中开发了使用特征向量定向方法来预测颤动边界(由两个特征向量之间逐渐失去正交性表示),因此可以为可能的颤动控制提供“前置时间”。在这项研究中,使用基本的简单梁单元来模拟面板(宽梁)。第一步,假设压电层粘结在面板的顶面和底面上,以在元件之间的接头处提供反弯矩。标准线性二次控制理论用于控制器设计,为简化起见,考虑了全状态反馈。控制器设计用于修改系统刚度矩阵,以便在颤动开始时重新稳定系统。结果,颤动的发生被抵消为更高的颤动速度。考虑了基于不同控制目标的控制器,并研究了控制力矩位置的影响。这种基本方法的潜在应用可以使用有限元方法直接应用于层压复合材料的板和壳。

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