自感知技术在压电驱动平台位置控制中的应用

K. Seki, M. Iwasaki
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引用次数: 7

摘要

提出了一种利用自感知技术对压电作动器进行振动抑制的位置控制方法。为了利用压电作动器实现高精度定位,需要对其机械振动和非线性特性进行补偿。本文设计了一种抗谐振频率变化的鲁棒振动抑制控制系统,该系统在位置控制系统上增加了一个自感知辅助小回路。在小环设计中,考虑降低振动频率附近的灵敏度特性,以抑制参比和干扰的残余振动。另一方面,考虑系统稳定性和伺服特性,设计了增广对象的主回路,包括自感知小回路。该方法已通过压电驱动平台的实验进行了验证。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Application of self-sensing technique for position control considering vibration suppression in piezo-driven stage
This paper presents a position control approach considering vibration suppression using self-sensing techniques in piezoelectric actuators. In order to achieve the high precision positioning using piezoelectric actuators, mechanical vibrations as well as nonlinear properties should be compensated. In this paper, a robust vibration suppression control system against resonant frequency variations is designed, where a minor loop aided by a self-sensing technique is added on the position control system. In the minor loop design, the reduction of sensitivity characteristic at around the vibration frequencies is considered to suppress the residual vibration for the reference and disturbance. Major loop for augmented plant including self-sensing minor loop, on the other hand, is designed by considering system stability and servo characteristic. The proposed approach has been evaluated by experiments using a piezo-driven stage.
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