Identification of Liquid Slosh Behavior using Continuous-time Hammerstein Model based Sine Cosine Algorithm
This paper presents the identification of liquid slosh plant using the Hammerstein model based on Sine Cosine Algorithm (SCA). A remote car that carrying a container of liquid is considered as the liquid slosh experimental rig. In contrast to other research works, this paper consider a piece-wise af...
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| Format: | Conference or Workshop Item |
| Language: | English English |
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Springer
2021
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| Online Access: | http://umpir.ump.edu.my/id/eprint/28444/ http://umpir.ump.edu.my/id/eprint/28444/1/58.%20Identification%20of%20liquid%20slosh%20behavior%20using%20continuous.pdf http://umpir.ump.edu.my/id/eprint/28444/2/58.1%20Identification%20of%20liquid%20slosh%20behavior%20using%20continuous.pdf |
| _version_ | 1848823055294398464 |
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| author | Jui, Julakha Jahan Mohd Helmi, Suid Zulkifli, Musa Mohd Ashraf, Ahmad |
| author_facet | Jui, Julakha Jahan Mohd Helmi, Suid Zulkifli, Musa Mohd Ashraf, Ahmad |
| author_sort | Jui, Julakha Jahan |
| building | UMP Institutional Repository |
| collection | Online Access |
| description | This paper presents the identification of liquid slosh plant using the Hammerstein model based on Sine Cosine Algorithm (SCA). A remote car that carrying a container of liquid is considered as the liquid slosh experimental rig. In contrast to other research works, this paper consider a piece-wise affine function in the nonlinear function of the Hammerstein model, which is more generalized function. Moreover, a continuous-time transfer function is utilized in the Hammerstein model, which is more suitable to represent a real system. The SCA method is used to tune both coefficients in the nonlinear function and transfer function of the Hammerstein model such that the error between the identified output and the real experimental output is minimized. The effectiveness of the proposed framework is assessed in terms of the convergence curve response, output response, and the stability of the identified model through the pole-zero map. The results show that the SCA based method is able to produce a Hammerstein model that yields identified output response close to the real ex-perimental slosh output. |
| first_indexed | 2025-11-15T02:51:03Z |
| format | Conference or Workshop Item |
| id | ump-28444 |
| institution | Universiti Malaysia Pahang |
| institution_category | Local University |
| language | English English |
| last_indexed | 2025-11-15T02:51:03Z |
| publishDate | 2021 |
| publisher | Springer |
| recordtype | eprints |
| repository_type | Digital Repository |
| spelling | ump-284442021-01-26T02:11:59Z http://umpir.ump.edu.my/id/eprint/28444/ Identification of Liquid Slosh Behavior using Continuous-time Hammerstein Model based Sine Cosine Algorithm Jui, Julakha Jahan Mohd Helmi, Suid Zulkifli, Musa Mohd Ashraf, Ahmad QA75 Electronic computers. Computer science This paper presents the identification of liquid slosh plant using the Hammerstein model based on Sine Cosine Algorithm (SCA). A remote car that carrying a container of liquid is considered as the liquid slosh experimental rig. In contrast to other research works, this paper consider a piece-wise affine function in the nonlinear function of the Hammerstein model, which is more generalized function. Moreover, a continuous-time transfer function is utilized in the Hammerstein model, which is more suitable to represent a real system. The SCA method is used to tune both coefficients in the nonlinear function and transfer function of the Hammerstein model such that the error between the identified output and the real experimental output is minimized. The effectiveness of the proposed framework is assessed in terms of the convergence curve response, output response, and the stability of the identified model through the pole-zero map. The results show that the SCA based method is able to produce a Hammerstein model that yields identified output response close to the real ex-perimental slosh output. Springer 2021-07-08 Conference or Workshop Item PeerReviewed pdf en http://umpir.ump.edu.my/id/eprint/28444/1/58.%20Identification%20of%20liquid%20slosh%20behavior%20using%20continuous.pdf pdf en http://umpir.ump.edu.my/id/eprint/28444/2/58.1%20Identification%20of%20liquid%20slosh%20behavior%20using%20continuous.pdf Jui, Julakha Jahan and Mohd Helmi, Suid and Zulkifli, Musa and Mohd Ashraf, Ahmad (2021) Identification of Liquid Slosh Behavior using Continuous-time Hammerstein Model based Sine Cosine Algorithm. In: Proceedings of the 11th National Technical Seminar on Unmanned System Technology 2019 (NUSYS’19) , 2-3 December 2019 , Universiti Malaysia Pahang, Gambang Campus, Kuantan, Pahang, Malaysia. pp. 345-356., 666. ISBN 978-981-15-5281-6 (Published) https://doi.org/10.1007/978-981-15-5281-6_24 |
| spellingShingle | QA75 Electronic computers. Computer science Jui, Julakha Jahan Mohd Helmi, Suid Zulkifli, Musa Mohd Ashraf, Ahmad Identification of Liquid Slosh Behavior using Continuous-time Hammerstein Model based Sine Cosine Algorithm |
| title | Identification of Liquid Slosh Behavior using Continuous-time Hammerstein Model based Sine Cosine Algorithm |
| title_full | Identification of Liquid Slosh Behavior using Continuous-time Hammerstein Model based Sine Cosine Algorithm |
| title_fullStr | Identification of Liquid Slosh Behavior using Continuous-time Hammerstein Model based Sine Cosine Algorithm |
| title_full_unstemmed | Identification of Liquid Slosh Behavior using Continuous-time Hammerstein Model based Sine Cosine Algorithm |
| title_short | Identification of Liquid Slosh Behavior using Continuous-time Hammerstein Model based Sine Cosine Algorithm |
| title_sort | identification of liquid slosh behavior using continuous-time hammerstein model based sine cosine algorithm |
| topic | QA75 Electronic computers. Computer science |
| url | http://umpir.ump.edu.my/id/eprint/28444/ http://umpir.ump.edu.my/id/eprint/28444/ http://umpir.ump.edu.my/id/eprint/28444/1/58.%20Identification%20of%20liquid%20slosh%20behavior%20using%20continuous.pdf http://umpir.ump.edu.my/id/eprint/28444/2/58.1%20Identification%20of%20liquid%20slosh%20behavior%20using%20continuous.pdf |