Modeling and controller design of an electro-hydraulic actuator system

Problem statement: Electro-hydraulic actuators are widely used in motion control application. Its valve needs to be controlled to determine direction of the motion. Mathematical modeling is a description of a system in terms of equations. It can be divided into two parts; physical modeling and syste...

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Main Authors: Rahmat, Mohd. Fua'ad, Rozali, S. M., Wahab, N. A., Zulfatman, Zulfatman, Jusoff, Kamaruzaman
Format: Article
Published: Science Publications 2010
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Online Access:http://eprints.utm.my/id/eprint/26253/
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spelling my.utm.262532018-10-31T12:27:21Z http://eprints.utm.my/id/eprint/26253/ Modeling and controller design of an electro-hydraulic actuator system Rahmat, Mohd. Fua'ad Rozali, S. M. Wahab, N. A. Zulfatman, Zulfatman Jusoff, Kamaruzaman TK Electrical engineering. Electronics Nuclear engineering Problem statement: Electro-hydraulic actuators are widely used in motion control application. Its valve needs to be controlled to determine direction of the motion. Mathematical modeling is a description of a system in terms of equations. It can be divided into two parts; physical modeling and system identification. The objective of this study was to obtain mathematical model of an electro-hydraulic system using system identification technique by estimating model using System Identification Toolbox in MATLAB. Approach: Experimental works were done to collect input and output data for model estimation and ARX model was chosen as model structure of the system. The best model was accepted based on the best fit criterion and residuals analysis of autocorrelation and cross correlation of the system input and output. PID controller was designed for the model through simulation in SIMULINK. The controller is tuning by Ziegler-Nichols method. The simulation work was verified by applying the controller to the real system to achieve the best performance of the system. Results: The result showed that the output of the system with controller in simulation mode and experimental works were improved and almost similar. Conclusion/Recommendations: The designed PID controller can be applied to the electro-hydraulic system either in simulation or real-time mode. The self-tuning or automatic tuning controller could be developed in future work to increase the reliability of the PID controller. Science Publications 2010 Article PeerReviewed Rahmat, Mohd. Fua'ad and Rozali, S. M. and Wahab, N. A. and Zulfatman, Zulfatman and Jusoff, Kamaruzaman (2010) Modeling and controller design of an electro-hydraulic actuator system. American Journal of Applied Sciences, 7 (8). 1100 - 1108. ISSN 1546-9239 ttp:///thescipub.com/abstract/10.3844/ajassp.2010.1100.1108 DOI:10.3844/ajassp.2010.1100.1108
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/
topic TK Electrical engineering. Electronics Nuclear engineering
spellingShingle TK Electrical engineering. Electronics Nuclear engineering
Rahmat, Mohd. Fua'ad
Rozali, S. M.
Wahab, N. A.
Zulfatman, Zulfatman
Jusoff, Kamaruzaman
Modeling and controller design of an electro-hydraulic actuator system
description Problem statement: Electro-hydraulic actuators are widely used in motion control application. Its valve needs to be controlled to determine direction of the motion. Mathematical modeling is a description of a system in terms of equations. It can be divided into two parts; physical modeling and system identification. The objective of this study was to obtain mathematical model of an electro-hydraulic system using system identification technique by estimating model using System Identification Toolbox in MATLAB. Approach: Experimental works were done to collect input and output data for model estimation and ARX model was chosen as model structure of the system. The best model was accepted based on the best fit criterion and residuals analysis of autocorrelation and cross correlation of the system input and output. PID controller was designed for the model through simulation in SIMULINK. The controller is tuning by Ziegler-Nichols method. The simulation work was verified by applying the controller to the real system to achieve the best performance of the system. Results: The result showed that the output of the system with controller in simulation mode and experimental works were improved and almost similar. Conclusion/Recommendations: The designed PID controller can be applied to the electro-hydraulic system either in simulation or real-time mode. The self-tuning or automatic tuning controller could be developed in future work to increase the reliability of the PID controller.
format Article
author Rahmat, Mohd. Fua'ad
Rozali, S. M.
Wahab, N. A.
Zulfatman, Zulfatman
Jusoff, Kamaruzaman
author_facet Rahmat, Mohd. Fua'ad
Rozali, S. M.
Wahab, N. A.
Zulfatman, Zulfatman
Jusoff, Kamaruzaman
author_sort Rahmat, Mohd. Fua'ad
title Modeling and controller design of an electro-hydraulic actuator system
title_short Modeling and controller design of an electro-hydraulic actuator system
title_full Modeling and controller design of an electro-hydraulic actuator system
title_fullStr Modeling and controller design of an electro-hydraulic actuator system
title_full_unstemmed Modeling and controller design of an electro-hydraulic actuator system
title_sort modeling and controller design of an electro-hydraulic actuator system
publisher Science Publications
publishDate 2010
url http://eprints.utm.my/id/eprint/26253/
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score 13.159267