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Topology optimization of piezoelectric smart structures for minimum energy consumption under active control

机译:主动控制下最小能耗的压电智能结构的拓扑优化

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摘要

This paper investigates topology optimization of the electrode coverage over piezoelectric patches attached to a thin-shell structure to reduce the energy consumption of active vibration control under harmonic excitations. The constant gain velocity feedback control method is employed, and the structural frequency response under control is analyzed with the finite element method. In the mathematical formulation of the proposed topology optimization model, the total energy consumption of the control system is taken as the objective function, and a constraint of the maximum allowable dynamic compliance is considered. The pseudo-densities indicating the distribution of surface electrode coverage over the piezoelectric layers are chosen as the design variables, and a penalized model is employed to relate the active damping effect and these design variables. The sensitivity analysis scheme of the control energy consumption with respect to the design variables is derived with the adjoint-variable method. Numerical examples demonstrate that the proposed optimization model is able to generate optimal topologies of electrode coverage over the piezoelectric layers, which can effectively reduce the energy consumption of the control system. Also, numerical comparisons with a minimum-volume optimization model show the advantage of the proposed method with respect to energy consumption. The proposed method may provide useful guidance to the layout optimization of piezoelectric smart structures where the energy supply is limited, such as miniature vibration control systems.
机译:本文研究了附着于薄壳结构的压电贴片电极覆盖的拓扑优化,以降低谐波激发下的主动振动控制的能量消耗。采用恒定增益速度反馈控制方法,并通过有限元方法分析控制的结构频率响应。在所提出的拓扑优化模型的数学制定中,控制系统的总能量消耗作为目标函数,并且考虑了最大允许动态合规性的约束。选择指示压电层上表面电极覆盖范围分布的伪密度作为设计变量,采用惩罚模型来涉及主动阻尼效果和这些设计变量。通过伴随变量方法导出关于设计变量的控制能量消耗的灵敏度分析方案。数值示例表明,所提出的优化模型能够在压电层上产生电极覆盖的最佳拓扑,这可以有效地降低控制系统的能量消耗。而且,具有最小体积优化模型的数值比较显示了所提出的方法关于能量消耗的优点。该方法可以为能量供应受限的压电智能结构的布局优化提供有用的指导,例如微型振动控制系统。

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