2013
DOI: 10.1088/0964-1726/22/7/075016
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A digital charge amplifier for hysteresis elimination in piezoelectric actuators

Abstract: Piezoelectric actuators are commonly used for nanopositioning due to their high resolution, low power consumption and wide operating frequency, but they suffer hysteresis, which affects linearity. In this paper, a novel digital charge amplifier is presented. Results show that hysteresis is reduced by 91% compared with a voltage amplifier, but over long operational periods the digital charge amplifier approach suffers displacement drift. A non-linear ARX model with long-term accuracy is used with a data fusion … Show more

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Cited by 23 publications
(24 citation statements)
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“…This has been known since the early 1980s [230,231]. Charge-controlled driving of piezoelectric actuators is occasionally used in technical applications [232], but the realisation of simple and flexible charge amplifiers is not trivial, and continues to be an object of research [233][234][235][236]. Especially in low-frequency operation, most amplifier concepts show unacceptable drift ( [101]; [215] (p. 2); [233]), and partly require actuator-specific calibration [101].…”
Section: Open-loop Operationmentioning
confidence: 99%
“…This has been known since the early 1980s [230,231]. Charge-controlled driving of piezoelectric actuators is occasionally used in technical applications [232], but the realisation of simple and flexible charge amplifiers is not trivial, and continues to be an object of research [233][234][235][236]. Especially in low-frequency operation, most amplifier concepts show unacceptable drift ( [101]; [215] (p. 2); [233]), and partly require actuator-specific calibration [101].…”
Section: Open-loop Operationmentioning
confidence: 99%
“…<10 Hz), charge and voltage drives are used jointly using filters and mathematical models developed with artificial intelligence techniques. This hybrid approach can almost vanish drift (Bazghaleh et al, 2013b). Surely, the utilised models and filters cannot be used in analogue circuits.…”
Section: Charge Drive Approachmentioning
confidence: 99%
“…The first use of a digital charge amplifier for a piezoelectric actuator was presented in 2010 (Bazghaleh et al, 2010) due to inherent defects of analogue methods of charge drive. Analogue charge drivers, more or less, cause a considerable voltage drop which reduces the range of displacement.…”
Section: Digital Charge Drivementioning
confidence: 99%
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