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Optimal placement of active bars in active vibration control for piezoelectric intelligent truss structures with random parameters

机译:随机参数压电智能桁架结构主动振动控制中主动杆的最优布置

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摘要

Considering the randomness of physical parameters of structural material, geometric dimensions of active bars and passive bars, applied loads and control forces simultaneously, the optimization of active bar's placement and feedback gains for the vibration control of intelligent truss structures are studied in this paper. Firstly, the performance function is developed based on the maximization of dissipation energy due to control action. Then, the optimal mathematical model with the reliability constraints on dynamic stress and displacement response is built. The numerical feature of dynamic response based on probability of intelligent structure is developed. Finally, a planar intelligent truss structure is used as an example to demonstrate the rationality and validity of the presented model and approach in structural active vibration control.
机译:考虑结构材料物理参数的随机性,主动杆和被动杆的几何尺寸,同时施加的载荷和控制力,研究了智能桁架结构振动控制中主动杆的放置和反馈增益的优化。首先,基于控制作用引起的耗散能量的最大化来开发性能函数。然后,建立了具有动态应力和位移响应可靠性约束的最优数学模型。建立了基于智能结构概率的动态响应数值特征。最后,以平面智能桁架结构为例,说明所提出的模型和方法在结构主动振动控制中的合理性和有效性。

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