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Experimental and Simulation Study on Active Vibration Control of Thin Rectangular Plate by Smart Material under Harmonic Excitation

机译:谐波激励下智能材料主动控制矩形薄板振动的实验与仿真研究

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In this paper the vibration of a smart cantilever plate is being controlled. Active vibration control (AVC) methods will be used to eliminate undesired vibrations in engineering structures. Using piezoelectric smart structures for the active vibration control for actuator and sensor in engineering applications. Simulation and experimental studies on active vibration control of smart structures have been presented. The closed loop control laws are incorporated into the finite element (FE) models by using ANSYS parametric design language (APDL). The proposed procedure is tested by active control for force vibration (harmonic excitation). The active vibration suppression is achieved using proportional gain method. Experiments have been conducted to verify the closed loop simulations. Smart plate consists of aluminum plate (250 mm x 180 mm x 0.5 mm) surface bonded piezoelectric patches of MIDé Quick Pack QP16n transducers (45.9 mm x 20.5 mm x 0.25 mm). Experimental results are obtained by LabVIEW programs developed in the study.
机译:在本文中,智能悬臂板的振动受到控制。主动振动控制(AVC)方法将用于消除工程结构中不希望的振动。在工程应用中,使用压电智能结构对执行器和传感器进行主动振动控制。提出了智能结构主动振动控制的仿真和实验研究。通过使用ANSYS参数化设计语言(APDL),将闭环控制定律纳入了有限元(FE)模型。通过主动控制力振动(谐波激励)对提出的程序进行了测试。使用比例增益方法可以实现主动振动抑制。已经进行了实验以验证闭环仿真。智能板由MIDéQuick Pack QP16n换能器(45.9 mm x 20.5 mm x 0.25 mm)的铝板(250 mm x 180 mm x 0.5 mm)表面粘合压电片组成。实验结果是通过研究中开发的LabVIEW程序获得的。

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