Hammerstein model based RLS algorithm for modeling the intelligent Pneumatic Actuator (IPA) system

An Intelligent Pneumatic Actuator (IPA) system is considered highly nonlinear and subject to nonlinearities which make the precise position control of this actuator is difficult to achieve. Thus, it is appropriate to model the system using nonlinear approach because the linear model sometimes not su...

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Main Authors: Sulaiman, S. F., Rahmat, M. F., Mohd. Faudzi, A. A, Osman, K., Sunar, N. H., Syed Salim, S. N.
Format: Article
Published: Insight Society 2017
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Online Access:http://eprints.utm.my/id/eprint/80854/
http://dx.doi.org/10.18517/ijaseit.7.4.3149
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spelling my.utm.808542019-07-24T00:08:05Z http://eprints.utm.my/id/eprint/80854/ Hammerstein model based RLS algorithm for modeling the intelligent Pneumatic Actuator (IPA) system Sulaiman, S. F. Rahmat, M. F. Mohd. Faudzi, A. A Osman, K. Sunar, N. H. Syed Salim, S. N. QA75 Electronic computers. Computer science An Intelligent Pneumatic Actuator (IPA) system is considered highly nonlinear and subject to nonlinearities which make the precise position control of this actuator is difficult to achieve. Thus, it is appropriate to model the system using nonlinear approach because the linear model sometimes not sufficient enough to represent the nonlinearity of the system in the real process. This study presents a new modeling of an IPA system using Hammerstein model based Recursive Least Square (RLS) algorithm. The Hammerstein model is one of the blocks structured nonlinear models often used to model a nonlinear system and it consists of a static nonlinear block followed by a linear block of dynamic element. In this study, the static nonlinear block was represented by a deadzone of the pneumatic valve, while the linear block was represented by a dynamic element of IPA system. A RLS has been employed as the main algorithm in order to estimate the parameters of the Hammerstein model. The validity of the proposed model has been verified by conducting a real-time experiment. All of the criteria as outlined in the system identification’s procedures were successfully complied by the proposed Hammerstein model as it managed to provide a stable system, higher best fit, lower loss function and lower final prediction error than a linear model developed before. The performance of the proposed Hammerstein model in controlling the IPA’s positioning system is also considered good. Thus, this new developed Hammerstein model is sufficient enough to represents the IPA system utilized in this study. Insight Society 2017 Article PeerReviewed Sulaiman, S. F. and Rahmat, M. F. and Mohd. Faudzi, A. A and Osman, K. and Sunar, N. H. and Syed Salim, S. N. (2017) Hammerstein model based RLS algorithm for modeling the intelligent Pneumatic Actuator (IPA) system. International Journal on Advanced Science, Engineering and Information Technology, 7 (4). pp. 1457-1463. ISSN 2088-5334 http://dx.doi.org/10.18517/ijaseit.7.4.3149 DOI:10.18517/ijaseit.7.4.3149
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 QA75 Electronic computers. Computer science
spellingShingle QA75 Electronic computers. Computer science
Sulaiman, S. F.
Rahmat, M. F.
Mohd. Faudzi, A. A
Osman, K.
Sunar, N. H.
Syed Salim, S. N.
Hammerstein model based RLS algorithm for modeling the intelligent Pneumatic Actuator (IPA) system
description An Intelligent Pneumatic Actuator (IPA) system is considered highly nonlinear and subject to nonlinearities which make the precise position control of this actuator is difficult to achieve. Thus, it is appropriate to model the system using nonlinear approach because the linear model sometimes not sufficient enough to represent the nonlinearity of the system in the real process. This study presents a new modeling of an IPA system using Hammerstein model based Recursive Least Square (RLS) algorithm. The Hammerstein model is one of the blocks structured nonlinear models often used to model a nonlinear system and it consists of a static nonlinear block followed by a linear block of dynamic element. In this study, the static nonlinear block was represented by a deadzone of the pneumatic valve, while the linear block was represented by a dynamic element of IPA system. A RLS has been employed as the main algorithm in order to estimate the parameters of the Hammerstein model. The validity of the proposed model has been verified by conducting a real-time experiment. All of the criteria as outlined in the system identification’s procedures were successfully complied by the proposed Hammerstein model as it managed to provide a stable system, higher best fit, lower loss function and lower final prediction error than a linear model developed before. The performance of the proposed Hammerstein model in controlling the IPA’s positioning system is also considered good. Thus, this new developed Hammerstein model is sufficient enough to represents the IPA system utilized in this study.
format Article
author Sulaiman, S. F.
Rahmat, M. F.
Mohd. Faudzi, A. A
Osman, K.
Sunar, N. H.
Syed Salim, S. N.
author_facet Sulaiman, S. F.
Rahmat, M. F.
Mohd. Faudzi, A. A
Osman, K.
Sunar, N. H.
Syed Salim, S. N.
author_sort Sulaiman, S. F.
title Hammerstein model based RLS algorithm for modeling the intelligent Pneumatic Actuator (IPA) system
title_short Hammerstein model based RLS algorithm for modeling the intelligent Pneumatic Actuator (IPA) system
title_full Hammerstein model based RLS algorithm for modeling the intelligent Pneumatic Actuator (IPA) system
title_fullStr Hammerstein model based RLS algorithm for modeling the intelligent Pneumatic Actuator (IPA) system
title_full_unstemmed Hammerstein model based RLS algorithm for modeling the intelligent Pneumatic Actuator (IPA) system
title_sort hammerstein model based rls algorithm for modeling the intelligent pneumatic actuator (ipa) system
publisher Insight Society
publishDate 2017
url http://eprints.utm.my/id/eprint/80854/
http://dx.doi.org/10.18517/ijaseit.7.4.3149
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score 13.18916