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A new amplifier for improving piezoelectric actuator linearity based on current switching in precision positioning

机译:基于精密定位中电流切换改善压电执行器线性度的新型放大器

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摘要

Piezoelectric actuators have traditionally been driven by voltage amplifiers. When driven at large voltages these actuators exhibit a significant amount of distortion, known as hysteresis, which may reduce the stability robustness of the system in feedback control applications. Piezoelectric transducers are known to exhibit less hysteresis when driven with current or charge rather than voltage. Despite this advantage, such methods have found little practical application due to the poor low frequency response of present current and charge driver designs. In this paper, a new piezoelectric amplifier based on current switching is presented which can reduce hysteresis. Special circuits and a hybrid control algorithm realize quick and precise positioning. Experimental results demonstrate that the amplifier can be used for dynamic and static applications and low frequency bandwidths can also be achieved.
机译:压电致动器传统上是由电压放大器驱动的。当以大电压驱动时,这些执行器会表现出大量的失真,称为磁滞现象,这可能会降低系统在反馈控制应用中的稳定性。已知压电传感器在用电流或电荷而不是电压驱动时表现出较小的磁滞。尽管有这个优点,但是由于当前电流和电荷驱动器设计的低频响应较差,因此这种方法几乎没有实际应用。本文提出了一种新的基于电流开关的压电放大器,它可以减少磁滞现象。特殊电路和混合控制算法可实现快速精确的定位。实验结果表明,该放大器可用于动态和静态应用,并且还可以实现低频带宽。

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