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Finite element modeling of active control of functionally graded shells in frequency domain via piezoelectric sensors and actuators

机译:通过压电传感器和执行器在频域中主动控制功能梯度壳体的有限元建模

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摘要

A flat-shell element is presented for the active control of functionally graded material (FGM) shells through integrated piezoelectric sensor/actuator layers. The finite element formulation based on first-order shear deformation theory (FSDT) can be applied to shells ranging from relatively thin to moderately thick dimensions. A constant gain displacement and velocity feedback control algorithm coupling the direct and inverse piezoelectric effects is applied to provide active control of the integrated FGM shell in a self-monitoring and self-controlling system. Frequency response characteristics of the FGM shell containing the piezoelectric sensors/actuators are analyzed in the frequency domain. The effects of constituent volume fraction and the influence of feedback control gain values on the dynamic responses of the FGM shell system are examined in detail.
机译:通过集成的压电传感器/执行器层,提出了一种用于主动控制功能梯度材料(FGM)外壳的扁平壳元件。基于一阶剪切变形理论(FSDT)的有限元公式可应用于尺寸从相对薄到中等厚的壳体。结合正负压电效应的恒定增益位移和速度反馈控制算法可用于在自监视和自控制系统中提供对集成FGM外壳的主动控制。在频域中分析了包含压电传感器/执行器的FGM外壳的频率响应特性。详细研究了组分体积分数的影响以及反馈控制增益值对FGM壳系统动力响应的影响。

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  • 来源
    《Computational Mechanics》 |2002年第1期|1-9|共9页
  • 作者

    T. Y. Ng; X. Q. He; K. M. Liew;

  • 作者单位

    Institute of High Performance Computing 89C Science Park Drive #02-11/12 The Rutherford Singapore 118261;

    Centre for Advanced Numerical Engineering Simulations CANES School of Mechanical and Production Engineering Nanyang Technological University Singapore 639798 e-mail: mkmliew@ntu.edu.sg;

    Centre for Advanced Numerical Engineering Simulations CANES School of Mechanical and Production Engineering Nanyang Technological University Singapore 639798 e-mail: mkmliew@ntu.edu.sg;

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