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A Self-Organizing Fuzzy Logic Classifier for Benchmarking Robot-Aided Blasting of Ship Hulls

Regular dry dock maintenance work on ship hulls is essential for maintaining the efficiency and sustainability of the shipping industry. Hydro blasting is one of the major processes of dry dock maintenance work, where human labor is extensively used. The conventional methods of maintenance work suff...

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Autores principales: Muthugala, M. A. Viraj J., Le, Anh Vu, Cruz, Eduardo Sanchez, Rajesh Elara, Mohan, Veerajagadheswar, Prabakaran, Kumar, Madhu
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7308935/
https://www.ncbi.nlm.nih.gov/pubmed/32517069
http://dx.doi.org/10.3390/s20113215
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author Muthugala, M. A. Viraj J.
Le, Anh Vu
Cruz, Eduardo Sanchez
Rajesh Elara, Mohan
Veerajagadheswar, Prabakaran
Kumar, Madhu
author_facet Muthugala, M. A. Viraj J.
Le, Anh Vu
Cruz, Eduardo Sanchez
Rajesh Elara, Mohan
Veerajagadheswar, Prabakaran
Kumar, Madhu
author_sort Muthugala, M. A. Viraj J.
collection PubMed
description Regular dry dock maintenance work on ship hulls is essential for maintaining the efficiency and sustainability of the shipping industry. Hydro blasting is one of the major processes of dry dock maintenance work, where human labor is extensively used. The conventional methods of maintenance work suffer from many shortcomings, and hence robotized solutions have been developed. This paper proposes a novel robotic system that can synthesize a benchmarking map for a previously blasted ship hull. A Self-Organizing Fuzzy logic (SOF) classifier has been developed to benchmark the blasting quality of a ship hull similar to blasting quality categorization done by human experts. Hornbill, a multipurpose inspection and maintenance robot intended for hydro blasting, benchmarking, and painting, has been developed by integrating the proposed SOF classifier. Moreover, an integrated system solution has been developed to improve dry dock maintenance of ship hulls. The proposed SOF classifier can achieve a mean accuracy of 0.9942 with an execution time of 8.42 µs. Realtime experimenting with the proposed robotic system has been conducted on a ship hull. This experiment confirms the ability of the proposed robotic system in synthesizing a benchmarking map that reveals the benchmarking quality of different areas of a previously blasted ship hull. This sort of a benchmarking map would be useful for ensuring the blasting quality as well as performing efficient spot wise reblasting before the painting. Therefore, the proposed robotic system could be utilized for improving the efficiency and quality of hydro blasting work on the ship hull maintenance industry.
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spelling pubmed-73089352020-06-25 A Self-Organizing Fuzzy Logic Classifier for Benchmarking Robot-Aided Blasting of Ship Hulls Muthugala, M. A. Viraj J. Le, Anh Vu Cruz, Eduardo Sanchez Rajesh Elara, Mohan Veerajagadheswar, Prabakaran Kumar, Madhu Sensors (Basel) Article Regular dry dock maintenance work on ship hulls is essential for maintaining the efficiency and sustainability of the shipping industry. Hydro blasting is one of the major processes of dry dock maintenance work, where human labor is extensively used. The conventional methods of maintenance work suffer from many shortcomings, and hence robotized solutions have been developed. This paper proposes a novel robotic system that can synthesize a benchmarking map for a previously blasted ship hull. A Self-Organizing Fuzzy logic (SOF) classifier has been developed to benchmark the blasting quality of a ship hull similar to blasting quality categorization done by human experts. Hornbill, a multipurpose inspection and maintenance robot intended for hydro blasting, benchmarking, and painting, has been developed by integrating the proposed SOF classifier. Moreover, an integrated system solution has been developed to improve dry dock maintenance of ship hulls. The proposed SOF classifier can achieve a mean accuracy of 0.9942 with an execution time of 8.42 µs. Realtime experimenting with the proposed robotic system has been conducted on a ship hull. This experiment confirms the ability of the proposed robotic system in synthesizing a benchmarking map that reveals the benchmarking quality of different areas of a previously blasted ship hull. This sort of a benchmarking map would be useful for ensuring the blasting quality as well as performing efficient spot wise reblasting before the painting. Therefore, the proposed robotic system could be utilized for improving the efficiency and quality of hydro blasting work on the ship hull maintenance industry. MDPI 2020-06-05 /pmc/articles/PMC7308935/ /pubmed/32517069 http://dx.doi.org/10.3390/s20113215 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Muthugala, M. A. Viraj J.
Le, Anh Vu
Cruz, Eduardo Sanchez
Rajesh Elara, Mohan
Veerajagadheswar, Prabakaran
Kumar, Madhu
A Self-Organizing Fuzzy Logic Classifier for Benchmarking Robot-Aided Blasting of Ship Hulls
title A Self-Organizing Fuzzy Logic Classifier for Benchmarking Robot-Aided Blasting of Ship Hulls
title_full A Self-Organizing Fuzzy Logic Classifier for Benchmarking Robot-Aided Blasting of Ship Hulls
title_fullStr A Self-Organizing Fuzzy Logic Classifier for Benchmarking Robot-Aided Blasting of Ship Hulls
title_full_unstemmed A Self-Organizing Fuzzy Logic Classifier for Benchmarking Robot-Aided Blasting of Ship Hulls
title_short A Self-Organizing Fuzzy Logic Classifier for Benchmarking Robot-Aided Blasting of Ship Hulls
title_sort self-organizing fuzzy logic classifier for benchmarking robot-aided blasting of ship hulls
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7308935/
https://www.ncbi.nlm.nih.gov/pubmed/32517069
http://dx.doi.org/10.3390/s20113215
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