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首页> 外文期刊>Latin American Journal of Solids and Structures >Vibration attenuation and shape control of surface mounted, embedded smart beam
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Vibration attenuation and shape control of surface mounted, embedded smart beam

机译:明装嵌入式智能梁的振动衰减和形状控制

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Active Vibration Control (AVC) using smart structure is used to reduce the vibration of a system by automatic modification of the system structural response. AVC is widely used, because of its wide and broad frequency response range, low additional mass, high adaptability and good efficiency. A lot of research has been done on Finite Element (FE) models for AVC based on Euler Bernoulli Beam Theory (EBT). In the present work Timoshenko Beam Theory (TBT) is used to model a smart cantilever beam with surface mounted sensors / actuators. A Periodic Output Feedback (POF) Controller has been designed and applied to control the first three modes of vibration of a flexible smart cantilever beam. The difficulties encountered in the usage of surface mounted piezoelectric patches in practical situations can be overcome by the use of embedded shear sensors / actuators. A mathematical model of a smart cantilever beam with embedded shear sensors and actuators is developed. A POF Controller has been designed and applied to control of vibration of a flexible smart cantilever beam and effect of actuator location on the performance of the controller is investigated. The mathematical modeling and control of a Multiple Input multiple Output (MIMO) systems with two sensors and two actuators have also been considered.
机译:使用智能结构的主动振动控制(AVC)用于通过自动修改系统结构响应来减少系统的振动。由于AVC具有宽广的频率响应范围,较低的附加质量,较高的适应性和良好的效率,因此被广泛使用。基于Euler Bernoulli Beam Theory(EBT)的AVC有限元(FE)模型已进行了大量研究。在目前的工作中,季莫申科梁理论(TBT)用于建模带有表面安装的传感器/执行器的智能悬臂梁。周期性输出反馈(POF)控制器已被设计并应用于控制柔性智能悬臂梁的前三种振动模式。在实际情况下使用表面贴装压电贴片时遇到的困难可以通过使用嵌入式剪切传感器/执行器来克服。建立了带有嵌入式剪切传感器和执行器的智能悬臂梁的数学模型。设计了POF控制器并将其应用于柔性智能悬臂梁的振动控制,并研究了执行器位置对控制器性能的影响。还考虑了具有两个传感器和两个执行器的多输入多输出(MIMO)系统的数学建模和控制。

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