Frequency based hysteresis compensation for piezoelectric tube scanner using artificial neural networks

Piezoelectric positioners are widely used as a nano technology tools. A common application of piezoelectric positioners is the piezoelectric tube scanner. This is because they guarantee a precise nanoscale positioning. However, there are some losses of positioning precession due to vibration in fast...

Full description

Saved in:
Bibliographic Details
Main Authors: Othman, Yahya Sheriff, Mahmood, Iskandar Al-Thani, Aibinu, Abiodun Musa, Alang Md Rashid, Nahrul Khair
Format: Article
Language:English
Published: Elsevier 2012
Subjects:
Online Access:http://irep.iium.edu.my/25836/1/Frequency_Based_Hysteresis_Compensation_for_Piezoelectric_Tube_Scanner_using_Artificial_Neural_Networks.pdf
http://irep.iium.edu.my/25836/
http://www.sciencedirect.com/science/article/pii/S1877705812026409
Tags: Add Tag
No Tags, Be the first to tag this record!
id my.iium.irep.25836
record_format dspace
spelling my.iium.irep.258362012-11-06T07:11:37Z http://irep.iium.edu.my/25836/ Frequency based hysteresis compensation for piezoelectric tube scanner using artificial neural networks Othman, Yahya Sheriff Mahmood, Iskandar Al-Thani Aibinu, Abiodun Musa Alang Md Rashid, Nahrul Khair Q Science (General) TJ212 Control engineering Piezoelectric positioners are widely used as a nano technology tools. A common application of piezoelectric positioners is the piezoelectric tube scanner. This is because they guarantee a precise nanoscale positioning. However, there are some losses of positioning precession due to vibration in fast scanning, and some nonlinear drawbacks represented by creep and hysteresis. Hysteresis problem appears at wide scanning range. For such a nonlinear problem, it is impossible to get an exact model for control system design. Therefore, in this paper a neural network scheme has been used to generate a proper control signal based on open-loop input/output (I/O) data. Control signal is then calculated in frequency domain based on I/O spectrum. Neural network is trained offline using set of reference signal harmonics to produce the required control signal harmonics. An inverse Fourier transform is performed to obtain the time domain control signal. Experimental results show that the developed control scheme improves the performance of the system by minimizing the effect of hysteresis. Elsevier 2012 Article REM application/pdf en http://irep.iium.edu.my/25836/1/Frequency_Based_Hysteresis_Compensation_for_Piezoelectric_Tube_Scanner_using_Artificial_Neural_Networks.pdf Othman, Yahya Sheriff and Mahmood, Iskandar Al-Thani and Aibinu, Abiodun Musa and Alang Md Rashid, Nahrul Khair (2012) Frequency based hysteresis compensation for piezoelectric tube scanner using artificial neural networks. Procedia Engineering, 41. 757 - 763. ISSN 1877-7058 http://www.sciencedirect.com/science/article/pii/S1877705812026409 10.1016/j.proeng.2012.07.240
institution Universiti Islam Antarabangsa Malaysia
building IIUM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider International Islamic University Malaysia
content_source IIUM Repository (IREP)
url_provider http://irep.iium.edu.my/
language English
topic Q Science (General)
TJ212 Control engineering
spellingShingle Q Science (General)
TJ212 Control engineering
Othman, Yahya Sheriff
Mahmood, Iskandar Al-Thani
Aibinu, Abiodun Musa
Alang Md Rashid, Nahrul Khair
Frequency based hysteresis compensation for piezoelectric tube scanner using artificial neural networks
description Piezoelectric positioners are widely used as a nano technology tools. A common application of piezoelectric positioners is the piezoelectric tube scanner. This is because they guarantee a precise nanoscale positioning. However, there are some losses of positioning precession due to vibration in fast scanning, and some nonlinear drawbacks represented by creep and hysteresis. Hysteresis problem appears at wide scanning range. For such a nonlinear problem, it is impossible to get an exact model for control system design. Therefore, in this paper a neural network scheme has been used to generate a proper control signal based on open-loop input/output (I/O) data. Control signal is then calculated in frequency domain based on I/O spectrum. Neural network is trained offline using set of reference signal harmonics to produce the required control signal harmonics. An inverse Fourier transform is performed to obtain the time domain control signal. Experimental results show that the developed control scheme improves the performance of the system by minimizing the effect of hysteresis.
format Article
author Othman, Yahya Sheriff
Mahmood, Iskandar Al-Thani
Aibinu, Abiodun Musa
Alang Md Rashid, Nahrul Khair
author_facet Othman, Yahya Sheriff
Mahmood, Iskandar Al-Thani
Aibinu, Abiodun Musa
Alang Md Rashid, Nahrul Khair
author_sort Othman, Yahya Sheriff
title Frequency based hysteresis compensation for piezoelectric tube scanner using artificial neural networks
title_short Frequency based hysteresis compensation for piezoelectric tube scanner using artificial neural networks
title_full Frequency based hysteresis compensation for piezoelectric tube scanner using artificial neural networks
title_fullStr Frequency based hysteresis compensation for piezoelectric tube scanner using artificial neural networks
title_full_unstemmed Frequency based hysteresis compensation for piezoelectric tube scanner using artificial neural networks
title_sort frequency based hysteresis compensation for piezoelectric tube scanner using artificial neural networks
publisher Elsevier
publishDate 2012
url http://irep.iium.edu.my/25836/1/Frequency_Based_Hysteresis_Compensation_for_Piezoelectric_Tube_Scanner_using_Artificial_Neural_Networks.pdf
http://irep.iium.edu.my/25836/
http://www.sciencedirect.com/science/article/pii/S1877705812026409
_version_ 1643609015497785344
score 13.160551