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Robustness of a multimodal piezoelectric damping involving the electrical analogue of a plate

机译:多模态压电阻尼的鲁棒性,涉及板的电模拟

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Multimodal passive damping of a mechanical structure can be implemented by a coupling to a secondary structure exhibiting similar modal properties. When considering a piezoelectric coupling, the secondary structure is an electrical network. A suitable topology for such a network can be obtained by a finite difference formulation of the mechanical equations, followed by a direct electromechanical analogy. This procedure is applied to the Kirchhoff-Love theory in order to find the electrical analogue of a clamped plate. The passive electrical network is implemented with inductors, transformers and the inherent capacitance of the piezoelectric patches. The electrical resonances are tuned to approach those of several mechanical modes simultaneously. This yields a broadband reduction of the plate vibrations through the array of interconnected piezoelectric patches. The robustness of the control strategy is evaluated by introducing perturbations in the mechanical or electrical designs. A non-optimal tuning is considered by way of a uniform variation of the network inductance. Then, the effect of local or boundary modifications of the electromechanical system is observed experimentally. In the end, the use of an analogous electrical network appears as an efficient and robust solution for the multimodal control of a plate.
机译:机械结构的多峰被动阻尼可以通过耦合到表现出类似模态特性的二级结构来实现。当考虑压电耦合时,次级结构是电网。可以通过对机械方程式进行有限差分表示,然后进行直接的机电类比来获得适用于此类网络的拓扑。该过程应用于基尔霍夫-洛夫理论,以找到被夹持板的电气类似物。无源电网通过电感器,变压器和压电贴片的固有电容实现。调整电谐振以同时接近几种机械模式的电谐振。通过互连的压电贴片阵列,可以宽泛地减少板振动。通过在机械或电气设计中引入扰动来评估控制策略的鲁棒性。通过网络电感的均匀变化来考虑非最佳调整。然后,通过实验观察机电系统的局部或边界修改的效果。最后,对于板的多峰控制,使用类似的电气网络似乎是一种有效而强大的解决方案。

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