Development of a Charge Estimator for Piezoelectric Actuators

Author:

Mohammadzaheri Morteza1ORCID,Emadi Mohammadreza1ORCID,Ghodsi Mojtaba2,Bahadur Issam M.1,Zarog Musaab1,Saleem Ashraf1

Affiliation:

1. Sultan Qaboos University, Muscat, Oman

2. Portsmouth University, Portsmouth, UK

Abstract

Charge of a piezoelectric actuator is proportional to its displacement for a wide area of operating. Hence, a charge estimator can estimate displacement for such actuators. However, existing charge estimators take a sizable portion of the excitation voltage, i.e. voltage drop. Digital charge estimators have presented the smallest voltage drop. This article first investigates digital charge estimators and suggests a design guideline to (i) maximise accuracy and (ii) minimise the voltage drop. Digital charge estimators have a sensing resistor; an estimator with a constant resistance is shown to violate the design guideline; while, all existing digital charge estimators use one or a few intuitively chosen resistors. That is, existing estimators witness unnecessarily large inaccuracy and/or voltage drop. This research develops charge estimators with varying resistors, fulfilling the design guideline. Several methods are tested to estimates the sensing resistance based on operating conditions, and radial basis function networks models excel in terms of accuracy.

Publisher

IGI Global

Subject

General Medicine

Reference28 articles.

1. Bazghaleh, M., Grainger, S., Cazzolato, B., & Lu, T.-f. (2010). An innovative digital charge amplifier to reduce hysteresis in piezoelectric actuators. Paper presented at theAustralian Robotics and Automation Association (ACRA), Brisbane, Australia. Academic Press.

2. A review of charge methods for driving piezoelectric actuators

3. A digital charge amplifier for hysteresis elimination in piezoelectric actuators

4. A novel digital charge-based displacement estimator for sensorless control of a grounded-load piezoelectric tube actuator

5. A new hybrid method for sensorless control of piezoelectric actuators

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