Application of electromagnetic sensor in electro-pneumatic actuator displacement control under variable loads conditions: experimental analysis

Dead-zone is a major issue that degrades the performance of the positioning control system in the pneumatic proportional valve control system. In order to address the issue, a switching inverse dead-zone compensator was incorporated to the pole-placement control of the Electro-Pneumatic Actuator (EP...

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Main Authors: Sunar, Noorhazirah, Rahmat, M. F., Mohd. Faudzi, Ahmad ‘Athif, Ismail, Zool Hilmi, Othman, Siti Marhainis, Sulaiman, Siti Fatimah, Abd. Wahab, Nur Haliza
Format: Article
Language:English
Published: Malaysian Society for Computed Tomography & Imaging Technology (MyCT) 2021
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Online Access:http://eprints.utm.my/id/eprint/98349/1/NoorhazirahSunar2021_ApplicationofElectromagneticSensorinElectro.pdf
http://eprints.utm.my/id/eprint/98349/
http://tssa.my/index.php/jtssa/article/view/169
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spelling my.utm.983492022-12-08T06:44:10Z http://eprints.utm.my/id/eprint/98349/ Application of electromagnetic sensor in electro-pneumatic actuator displacement control under variable loads conditions: experimental analysis Sunar, Noorhazirah Rahmat, M. F. Mohd. Faudzi, Ahmad ‘Athif Ismail, Zool Hilmi Othman, Siti Marhainis Sulaiman, Siti Fatimah Abd. Wahab, Nur Haliza TK Electrical engineering. Electronics Nuclear engineering Dead-zone is a major issue that degrades the performance of the positioning control system in the pneumatic proportional valve control system. In order to address the issue, a switching inverse dead-zone compensator was incorporated to the pole-placement control of the Electro-Pneumatic Actuator (EPA) systems driven by a proportional directional control valve. The focus of this study is to do an experimental analysis to evaluate the robustness of the system under varying loads and varying position distances. Electromagnetic sensor is used to measure the displacement of the pneumatic cylinder piston movement. In this paper, the EPA model was chosen as a Hammerstein model that contains an Autoregressive with exogenous term (ARX) model and a nonlinear dead-zone model. The ARX model is estimated using the Recursive Least Square (RLS) method and the nonlinear model is obtained by using the Particle Swarm Optimization (PSO) method. The position tracking of the EPA system adapts to the pole-placement control law and is combined with switching inverse dead-zone in a feedforward manner. Experimental investigations were carried out for varying loads from 3.1 kg to 23.5 kg and varying position distances from 25 mm to 200 mm. Experimental results show that the EPA system controlled by the proposed controller is able to perform no overshoots for loads weighing less than 23.5 kg for all tested position distances. In addition, the proposed method achieved a steady state position error of 0.46 mm, a rise time of 0.21 s and a settling time of 0.49 s. The results demonstrated that as the load weight and position distance increased, transient time increased. However, the proposed method has successfully controlled the positioning of the EPA systems for all tested load weight and position distance. Malaysian Society for Computed Tomography & Imaging Technology (MyCT) 2021-11-22 Article PeerReviewed application/pdf en http://eprints.utm.my/id/eprint/98349/1/NoorhazirahSunar2021_ApplicationofElectromagneticSensorinElectro.pdf Sunar, Noorhazirah and Rahmat, M. F. and Mohd. Faudzi, Ahmad ‘Athif and Ismail, Zool Hilmi and Othman, Siti Marhainis and Sulaiman, Siti Fatimah and Abd. Wahab, Nur Haliza (2021) Application of electromagnetic sensor in electro-pneumatic actuator displacement control under variable loads conditions: experimental analysis. Journal of Tomography System & Sensors Application (TSSA), 4 (2). pp. 95-108. ISSN 2636-9133 http://tssa.my/index.php/jtssa/article/view/169 NA
institution Universiti Teknologi Malaysia
building UTM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Malaysia
content_source UTM Institutional Repository
url_provider http://eprints.utm.my/
language English
topic TK Electrical engineering. Electronics Nuclear engineering
spellingShingle TK Electrical engineering. Electronics Nuclear engineering
Sunar, Noorhazirah
Rahmat, M. F.
Mohd. Faudzi, Ahmad ‘Athif
Ismail, Zool Hilmi
Othman, Siti Marhainis
Sulaiman, Siti Fatimah
Abd. Wahab, Nur Haliza
Application of electromagnetic sensor in electro-pneumatic actuator displacement control under variable loads conditions: experimental analysis
description Dead-zone is a major issue that degrades the performance of the positioning control system in the pneumatic proportional valve control system. In order to address the issue, a switching inverse dead-zone compensator was incorporated to the pole-placement control of the Electro-Pneumatic Actuator (EPA) systems driven by a proportional directional control valve. The focus of this study is to do an experimental analysis to evaluate the robustness of the system under varying loads and varying position distances. Electromagnetic sensor is used to measure the displacement of the pneumatic cylinder piston movement. In this paper, the EPA model was chosen as a Hammerstein model that contains an Autoregressive with exogenous term (ARX) model and a nonlinear dead-zone model. The ARX model is estimated using the Recursive Least Square (RLS) method and the nonlinear model is obtained by using the Particle Swarm Optimization (PSO) method. The position tracking of the EPA system adapts to the pole-placement control law and is combined with switching inverse dead-zone in a feedforward manner. Experimental investigations were carried out for varying loads from 3.1 kg to 23.5 kg and varying position distances from 25 mm to 200 mm. Experimental results show that the EPA system controlled by the proposed controller is able to perform no overshoots for loads weighing less than 23.5 kg for all tested position distances. In addition, the proposed method achieved a steady state position error of 0.46 mm, a rise time of 0.21 s and a settling time of 0.49 s. The results demonstrated that as the load weight and position distance increased, transient time increased. However, the proposed method has successfully controlled the positioning of the EPA systems for all tested load weight and position distance.
format Article
author Sunar, Noorhazirah
Rahmat, M. F.
Mohd. Faudzi, Ahmad ‘Athif
Ismail, Zool Hilmi
Othman, Siti Marhainis
Sulaiman, Siti Fatimah
Abd. Wahab, Nur Haliza
author_facet Sunar, Noorhazirah
Rahmat, M. F.
Mohd. Faudzi, Ahmad ‘Athif
Ismail, Zool Hilmi
Othman, Siti Marhainis
Sulaiman, Siti Fatimah
Abd. Wahab, Nur Haliza
author_sort Sunar, Noorhazirah
title Application of electromagnetic sensor in electro-pneumatic actuator displacement control under variable loads conditions: experimental analysis
title_short Application of electromagnetic sensor in electro-pneumatic actuator displacement control under variable loads conditions: experimental analysis
title_full Application of electromagnetic sensor in electro-pneumatic actuator displacement control under variable loads conditions: experimental analysis
title_fullStr Application of electromagnetic sensor in electro-pneumatic actuator displacement control under variable loads conditions: experimental analysis
title_full_unstemmed Application of electromagnetic sensor in electro-pneumatic actuator displacement control under variable loads conditions: experimental analysis
title_sort application of electromagnetic sensor in electro-pneumatic actuator displacement control under variable loads conditions: experimental analysis
publisher Malaysian Society for Computed Tomography & Imaging Technology (MyCT)
publishDate 2021
url http://eprints.utm.my/id/eprint/98349/1/NoorhazirahSunar2021_ApplicationofElectromagneticSensorinElectro.pdf
http://eprints.utm.my/id/eprint/98349/
http://tssa.my/index.php/jtssa/article/view/169
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score 13.160551