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On the Feedforward Control of Hysteresis for a Piezoelectric Plate

机译:压电板迟滞的前馈控制

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This paper discusses the modeling and feedforward control of hysteresis in a Cantor-like piezoelectric plate. The generalized play operator is analyzed in connection with the plate equations. Results show that hysteresis can be reduced to less than 40% when applying the feedforward control. The subject of the paper belongs to the field of dynamics, characterization and control at the microanoscale. The choose of the Cantor-like piezoelectric plate is motivated by its special property to generate the subharmonic waves due to the anharmonic coupling between the extended-vibration (phonon) and the localized-mode (fracton) regimes. This behavior is a benefit for several applications to the mechanics of grippers and manipulators at the microano scale. In spite of this, the nonlinearities make the piezoelectric plates lose their accuracy if not controlled. For that, the generalized play operator is connected in this paper to the plate equations and the control is focused on feedforward or compensation technique with no sensor requirement. Such advantage is appreciated in the microano-scale because existing sensors that have the required performances are hardly embeddable. The results have confirmed that feedforward control can give general performances such as accuracy and speed required for this particular application. Such control is of great interest because the costs, sizes, and performances of existing sensors limit their use in this domain.
机译:本文讨论了Cantor型压电板中磁滞的建模和前馈控制。结合板方程来分析广义游戏算子。结果表明,在应用前馈控制时,磁滞可减少到40%以下。本文的主题属于微观/纳米尺度的动力学,表征和控制领域。由于扩展振动(声子)和局部模式(分数)形式之间的非谐耦合,Cantor型压电板的选择受到其特殊属性的激励而产生次谐波。此行为对于微米/纳米级的机械手和机械手的多种应用是有益的。尽管如此,非线性如果不加以控制,会使压电板失去准确性。为此,本文将广义游戏算子连接到板方程,并且控制集中在无传感器要求的前馈或补偿技术上。由于具有所需性能的现有传感器几乎不可嵌入,因此在微/纳米尺度上可以欣赏到这种优势。结果证实,前馈控制可以提供一般性能,例如该特定应用所需的精度和速度。由于现有传感器的成本,尺寸和性能限制了它们在该领域的使用,因此这种控制引起了极大的兴趣。

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