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An Overview of Piezoelectric Self-Sensing Actuation for Nanopositioning Applications: Electrical Circuits, Displacement, and Force Estimation

机译:纳米定位应用的压电自感应驱动概述:电路,位移和力估计

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摘要

The industrial sector often employs piezoelectric materials as actuators for a variety of uses, some of which require a precise positioning while being limited by space and cost factors that impede the insertion of external position and force sensors. Piezoelectric actuators (PEAs) are characterized by strong nonlinearities (hysteresis and creep), badly damped oscillations, and sensitivity to the environment, especially temperature variation, which makes the measurement of the position mandatory to guarantee the required precision and repeatability of piezoelectric-based positioning systems operating at the microscale and nanoscale. Self-sensing actuation (SSA) techniques allow the implementation of precise positioning control of PEAs without the hindrance of external position sensors. This article reviews the different SSA techniques used for precise positioning control of PEAs. The principle of SSA is defined by the capability of deriving the physical state of a PEA (displacement, perceived force, and so on) without the use of external sensors to directly measure thereof, but rather by estimating it from the measurement of less intrusive and cheaper physical signals produced by the PEA itself (throughout current, voltage drop, and so on). The applicability and constraints of each SSA approach are examined in order to help in the determination of the most adequate approach for precise control of PEAs positioning and handling force control.
机译:工业部门通常将压电材料用作各种用途的致动器,其中一些要求精确定位,同时受到空间和成本因素的限制,这些因素阻碍了外部位置和力传感器的插入。压电执行器(PEA)具有强非线性(磁滞和蠕变),阻尼衰减大,对环境敏感(尤其是温度变化)的特点,这使得必须进行位置测量以保证所需的基于压电的定位的精度和可重复性在微米级和纳米级运行的系统。自感应驱动(SSA)技术可实现PEA的精确定位控制,而不会影响外部位置传感器。本文回顾了用于PEA精确定位控制的不同SSA技术。 SSA的原理是由以下能力定义的:无需使用外部传感器直接测量PEA的物理状态(位移,感知力等),而是通过对侵入性较小且不易损坏的测量进行估算PEA本身产生的物理信号更便宜(整个电流,电压降等等)。检查了每种SSA方法的适用性和约束条件,以帮助确定最合适的方法来精确控制PEA定位和操纵力控制。

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