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首页> 外文期刊>Journal of Advanced Mechanical Design, Systems, and Manufacturing >An Open-Loop Positioning Method for Reduction of Influence of Nonlinearities in Piezoelectric Actuator
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An Open-Loop Positioning Method for Reduction of Influence of Nonlinearities in Piezoelectric Actuator

机译:减少压电执行器非线性影响的开环定位方法

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摘要

A unique driving method of piezoelectric actuator to reduce influences of hysteresis and creep is represented in the paper. It is for point-to-point (PTP) open-loop positioning. In the method, when an object is stepwise positioned using the piezoelectric actuator, the input voltage to the actuator is raised up to maximum value and pulled down to 0V sinusoidally in order to initialize the actuator condition, and then it is returned to a constant starting point at the beginning of every step. Finally it is raised up to appropriate step height with some overshoot. Both influences of hysteresis and creep characteristics are reduced drastically using the method. Stepwise positioning of 2μm step height with 0.2μm accuracy is realized using the basic method. For nano-meter order positioning accuracy, creep behavior of the actuator is serious problem. It is found that multi-cycle large sinusoidal drive which is called initializing drive can reduce creep motion significantly. Eventually, less than 5nm accuracy for 20nm stepwise PTP positioning is realized.
机译:本文介绍了一种压电致动器的独特驱动方法,可减少磁滞和蠕变的影响。用于点对点(PTP)开环定位。在该方法中,当使用压电致动器逐步定位物体时,致动器的输入电压会升高到最大值,然后正弦拉低至0V,以初始化致动器条件,然后将其返回到恒定启动状态指向每一步的开始。最后,将其提升到适当的台阶高度并产生一些过冲。使用该方法可以大大减少磁滞和蠕变特性的影响。使用基本方法可以实现2μm台阶高度的步进定位,精度为0.2μm。对于纳米级的定位精度,致动器的蠕变行为是一个严重的问题。发现多周期大正弦波驱动(称为初始化驱动)可以显着减少蠕变运动。最终,实现20nm逐步PTP定位的精度低于5nm。

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