Using output voltage of charge drivers to reduce hysteresis of piezoelectric actuators
Author:
Publisher
Institution of Engineering and Technology (IET)
Subject
Electrical and Electronic Engineering
Link
https://digital-library.theiet.org/content/journals/10.1049/el.2012.1149?crawler=true&mimetype=application/pdf
Reference6 articles.
1. Feedback-Linearized Inverse Feedforward for Creep, Hysteresis, and Vibration Compensation in AFM Piezoactuators
2. Making a commercial atomic force microscope more accurate and faster using positive position feedback control
3. Comstock, R.H.: ‘Charge control of piezoelectric actuators to reduce hysteresis effects’, U.S., (No. 4,263,527)
4. Improving the linearity of piezoelectric ceramic actuators
5. Switched capacitor charge pump reduces hysteresis of piezoelectric actuators over a large frequency range
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1. A Distributed Parameter Maxwell-Slip Model for the Hysteresis in Piezoelectric Actuators;IEEE Transactions on Industrial Electronics;2019-09
2. An investigation on kinematics and dynamics performance of a novel 3-PRC-compliant parallel micromanipulator;Advances in Mechanical Engineering;2018-07
3. Modelling and compensation of hysteresis in piezoelectric actuators based on Maxwell approach;Electronics Letters;2016-02
4. Mirror control with strain feedback and charge drive for high-performance of scanning probe microscope positioners;Sensors and Actuators A: Physical;2014-08
5. Note: Pseudo-charge-driver for grounded piezoelectric actuators with high linearity;Review of Scientific Instruments;2014-03
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