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Thermoelastic and Pyroelectric Couplings Effects on Dynamics and Active Control of Smart Piezolaminated Beam Modeled by Finite Element Method

机译:热弹性和热电偶合对有限元建模的智能压电压电梁动力学和主动控制的影响

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摘要

Smart structures with integrated sensors, actuators, and control electronics are of importance to the next generation high-performance structural systems. In this study, thermopiezoelastic characteristics of piezoelectric beam continua are studied and applications of the theory to active structures in sensing and optimal control are discussed. Using linear thermopiezoelastic theory and Timoshenko assumptions, a generic thermopiezoelastic theory for piezolaminated composite beam is derived. Finite element equations for the thermopiezoelastic media are obtained by using the linear constitutive equations in Hamilton's principle together with the finite element approximations. The structure consists of a modeling of cantilevered piezolaminated Timoshenko beam with integrated thermopiezoelectric elements between two aluminium layers. The structure is modelled analytically and then numerically and the results of simulations are presented in order to visualize the states of their dynamics and the state of control. The optimal control LQG accompanied by the Kalman filter is applied. The effects of thermoelastic and pyroelectric couplings on the dynamics of the structure and on the control procedure are studied and discussed. We show that the control procedure cannot be perturbed by applying a thermal gradient and the control can be applied at any time during the period of vibration of the beam.
机译:集成了传感器,执行器和控制电子设备的智能结构对于下一代高性能结构系统至关重要。在这项研究中,研究了压电束连续体的热弹塑性特征,并讨论了该理论在主动结构中的传感和最佳控制的应用。利用线性热弹塑性理论和Timoshenko假设,推导了压电复合梁的一般热弹塑性理论。通过使用汉密尔顿原理中的线性本构方程和有限元逼近,获得热弹塑性介质的有限元方程。该结构包括一个悬臂式压电叠层Timoshenko梁的模型,在两个铝层之间具有集成的热压电元件。对结构进行解析建模,然后进行数值建模,并给出仿真结果,以可视化其动力学状态和控制状态。应用伴随卡尔曼滤波器的最优控制LQG。研究和讨论了热弹性和热电耦合对结构动力学和控制程序的影响。我们表明,通过施加热梯度不会干扰控制过程,并且可以在光束振动期间的任何时间进行控制。

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  • 来源
    《Smart Materials Research》 |2014年第2014期|145087.1-145087.10|共10页
  • 作者单位

    Team Science and Advanced Technologies, National School of Applied Sciences, Abdelmalek Essaadi University, 93030 Tetouan, Morocco;

    Team Advanced Materials and Energy Systems, High School of Technology, Moulay Ismail University, 50040 Meknes, Morocco;

    Team Advanced Materials and Energy Systems, High School of Technology, Moulay Ismail University, 50040 Meknes, Morocco;

    Team Advanced Materials and Energy Systems, High School of Technology, Moulay Ismail University, 50040 Meknes, Morocco;

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