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Active control of adaptive laminated structures with bonded piezoelectric sensors and actuators

机译:具有粘合压电传感器和执行器的自适应叠层结构的主动控制

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A finite element formulation for active vibration control of thin plate laminated structures with integrated piezoelectric layers, acting as sensors and actuators, is presented in this paper. The finite element model is a nonconforming single-layer triangular plate/shell element with 18 degrees of freedom for the generalized displacements and one electrical potential degree of freedom for each piezoelectric element layer. The model is based on the Kirchhoff classical laminated theory, and can be applied to plate and shell adaptive structures. To achieve a mechanism of active control of the structure dynamic response, a feedback control algorithm is used, coupling the sensor and active piezoelectric layers, and the Newmark method is considered to calculate the dynamic response of the laminated structures. The model is applied in the solution of four illustrative cases, and the results are presented and discussed.
机译:本文提出了一种用于主动控制薄板叠层结构的有限元公式,该结构具有集成的压电层,用作传感器和执行器。有限元模型是一个不合格的单层三角形板/壳单元,其广义位移为18自由度,每个压电元件层为一个电位自由度。该模型基于基尔霍夫(Kirchhoff)经典层压理论,可以应用于板壳自适应结构。为了实现主动控制结构动力响应的机制,采用了反馈控制算法,将传感器层和主动压电层耦合在一起,并考虑采用Newmark方法来计算层压结构的动力响应。该模型在四个示例性案例的解决方案中得到了应用,并给出了结果并进行了讨论。

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