Bio-inspired algorithms for modeling and control of underwater flexible single-link manipulator

This research focuses on bio-inspired modeling and control system of an underwater flexible manipulator system (UFM). The dynamic behavior of the UFM was first modeled using system identification (SI) methods utilizing bio-inspired algorithms. The input–output data used for identification were acqui...

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Main Authors: Mat Darus, I. Z., Al-Khafaji, Ali A. M.
Format: Conference or Workshop Item
Published: 2021
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Online Access:http://eprints.utm.my/id/eprint/97974/
http://dx.doi.org/10.1007/978-981-15-4917-5_35
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spelling my.utm.979742022-11-10T02:03:06Z http://eprints.utm.my/id/eprint/97974/ Bio-inspired algorithms for modeling and control of underwater flexible single-link manipulator Mat Darus, I. Z. Al-Khafaji, Ali A. M. TJ Mechanical engineering and machinery This research focuses on bio-inspired modeling and control system of an underwater flexible manipulator system (UFM). The dynamic behavior of the UFM was first modeled using system identification (SI) methods utilizing bio-inspired algorithms. The input–output data used for identification were acquired directly from a laboratory-sized UFM experimental rig developed earlier by the previous researcher. The models were developed using cuckoo search algorithm (CSA) and flower pollination algorithm (FPA) using parametric ARX model structured. For the controllers of the UFM, proportional-integral-derivative (PID) controllers were tuned using conventional heuristic and intelligent FPA methods. These algorithms were utilized to obtain the optimal values of controller parameters for trajectory tracking control of rigid-body motion of the UFM system. The PID controller is tuned offline based on the best identified SI model. The performance of these control schemes was analyzed via real-time PC-based control and observed in terms of trajectory tracking and error. The overall result of UFM described in this research revealed the superiority of the PID controllers tuned using bio-inspired flower pollination algorithm (FPA). It was found that the percentage of improvement achieved experimentally by the PID controller tuned by FPA indicates superiority compared to PID tuned heuristically with 45.6% improvement on overshoot and 66% improvement of MSE for negative pulse and 100% improvement on overshoot for positive pulse. 2021 Conference or Workshop Item PeerReviewed Mat Darus, I. Z. and Al-Khafaji, Ali A. M. (2021) Bio-inspired algorithms for modeling and control of underwater flexible single-link manipulator. In: 2nd International Conference on Sensor Networks and Signal Processing, SNSP 2019, 19 - 22 November 2019, Hualien, Taiwan. http://dx.doi.org/10.1007/978-981-15-4917-5_35
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 TJ Mechanical engineering and machinery
spellingShingle TJ Mechanical engineering and machinery
Mat Darus, I. Z.
Al-Khafaji, Ali A. M.
Bio-inspired algorithms for modeling and control of underwater flexible single-link manipulator
description This research focuses on bio-inspired modeling and control system of an underwater flexible manipulator system (UFM). The dynamic behavior of the UFM was first modeled using system identification (SI) methods utilizing bio-inspired algorithms. The input–output data used for identification were acquired directly from a laboratory-sized UFM experimental rig developed earlier by the previous researcher. The models were developed using cuckoo search algorithm (CSA) and flower pollination algorithm (FPA) using parametric ARX model structured. For the controllers of the UFM, proportional-integral-derivative (PID) controllers were tuned using conventional heuristic and intelligent FPA methods. These algorithms were utilized to obtain the optimal values of controller parameters for trajectory tracking control of rigid-body motion of the UFM system. The PID controller is tuned offline based on the best identified SI model. The performance of these control schemes was analyzed via real-time PC-based control and observed in terms of trajectory tracking and error. The overall result of UFM described in this research revealed the superiority of the PID controllers tuned using bio-inspired flower pollination algorithm (FPA). It was found that the percentage of improvement achieved experimentally by the PID controller tuned by FPA indicates superiority compared to PID tuned heuristically with 45.6% improvement on overshoot and 66% improvement of MSE for negative pulse and 100% improvement on overshoot for positive pulse.
format Conference or Workshop Item
author Mat Darus, I. Z.
Al-Khafaji, Ali A. M.
author_facet Mat Darus, I. Z.
Al-Khafaji, Ali A. M.
author_sort Mat Darus, I. Z.
title Bio-inspired algorithms for modeling and control of underwater flexible single-link manipulator
title_short Bio-inspired algorithms for modeling and control of underwater flexible single-link manipulator
title_full Bio-inspired algorithms for modeling and control of underwater flexible single-link manipulator
title_fullStr Bio-inspired algorithms for modeling and control of underwater flexible single-link manipulator
title_full_unstemmed Bio-inspired algorithms for modeling and control of underwater flexible single-link manipulator
title_sort bio-inspired algorithms for modeling and control of underwater flexible single-link manipulator
publishDate 2021
url http://eprints.utm.my/id/eprint/97974/
http://dx.doi.org/10.1007/978-981-15-4917-5_35
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score 13.160551