Design and development of remotely operated vehicle to assess the water quality in aquaculture area

Aquaculture has been recognized as a sector that can assist to diversify the Brunei economy from relying on the oil and gas industry. Previous research has indicated that water quality in aquaculture settings is a major limiting factor, thus, it is important to examine and determine the influencing...

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Main Authors: Abdul Rahim, Muhamad Najih, Awg Hamid, Dayang Tiawa, Muhamad Said, Mohd. Farid, Jamaludin, Mohd. Najeb, Rozalan, Hanif Hafizin
Format: Article
Language:English
Published: UniSZA 2022
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Online Access:http://eprints.utm.my/104798/1/MohdFarid2022_DesignandDevelopmentofRemotelyOperatedVehicle.pdf
http://eprints.utm.my/104798/
http://dx.doi.org/10.37231/apj.2022.5.2.409
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spelling my.utm.1047982024-03-01T01:52:08Z http://eprints.utm.my/104798/ Design and development of remotely operated vehicle to assess the water quality in aquaculture area Abdul Rahim, Muhamad Najih Awg Hamid, Dayang Tiawa Muhamad Said, Mohd. Farid Jamaludin, Mohd. Najeb Rozalan, Hanif Hafizin TJ Mechanical engineering and machinery Aquaculture has been recognized as a sector that can assist to diversify the Brunei economy from relying on the oil and gas industry. Previous research has indicated that water quality in aquaculture settings is a major limiting factor, thus, it is important to examine and determine the influencing elements that would harm them. However, traditional methods of assessing water quality are unsafe, expensive, labor-intensive, and the sampling measurements may not represent the overall aquaculture areas. Thus, alternative method in collecting the samples is applied using Remotely Operated Vehicle (ROV). In this paper, the design of an innovative ROV equipped with sensors, cameras, and lighting systems in conducting in-situ measurement of the main water quality parameter are presented. The main objective of this ROV is to increase the safety of humans working in difficult-to-access underwater in obtaining measurements with a probe or to collect samples and analyze them in a laboratory. Temperature, dissolved oxygen (DO), nitrate, ammonia, and pH of water are among the assessed parameters. The sensors attached to ROV will take measurements at 15 sample waypoints in existing aquaculture areas. The data gathered may also be utilized to interpret the spatial distribution of measurements in the aquaculture areas. This project is expected to increase the productivity of Brunei aquaculture industry in the new future. UniSZA 2022 Article PeerReviewed application/pdf en http://eprints.utm.my/104798/1/MohdFarid2022_DesignandDevelopmentofRemotelyOperatedVehicle.pdf Abdul Rahim, Muhamad Najih and Awg Hamid, Dayang Tiawa and Muhamad Said, Mohd. Farid and Jamaludin, Mohd. Najeb and Rozalan, Hanif Hafizin (2022) Design and development of remotely operated vehicle to assess the water quality in aquaculture area. Asian People Journal (APJ), 5 (2). pp. 50-60. ISSN 2600-8971 http://dx.doi.org/10.37231/apj.2022.5.2.409 DOI : 10.37231/apj.2022.5.2.409
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/
language English
topic TJ Mechanical engineering and machinery
spellingShingle TJ Mechanical engineering and machinery
Abdul Rahim, Muhamad Najih
Awg Hamid, Dayang Tiawa
Muhamad Said, Mohd. Farid
Jamaludin, Mohd. Najeb
Rozalan, Hanif Hafizin
Design and development of remotely operated vehicle to assess the water quality in aquaculture area
description Aquaculture has been recognized as a sector that can assist to diversify the Brunei economy from relying on the oil and gas industry. Previous research has indicated that water quality in aquaculture settings is a major limiting factor, thus, it is important to examine and determine the influencing elements that would harm them. However, traditional methods of assessing water quality are unsafe, expensive, labor-intensive, and the sampling measurements may not represent the overall aquaculture areas. Thus, alternative method in collecting the samples is applied using Remotely Operated Vehicle (ROV). In this paper, the design of an innovative ROV equipped with sensors, cameras, and lighting systems in conducting in-situ measurement of the main water quality parameter are presented. The main objective of this ROV is to increase the safety of humans working in difficult-to-access underwater in obtaining measurements with a probe or to collect samples and analyze them in a laboratory. Temperature, dissolved oxygen (DO), nitrate, ammonia, and pH of water are among the assessed parameters. The sensors attached to ROV will take measurements at 15 sample waypoints in existing aquaculture areas. The data gathered may also be utilized to interpret the spatial distribution of measurements in the aquaculture areas. This project is expected to increase the productivity of Brunei aquaculture industry in the new future.
format Article
author Abdul Rahim, Muhamad Najih
Awg Hamid, Dayang Tiawa
Muhamad Said, Mohd. Farid
Jamaludin, Mohd. Najeb
Rozalan, Hanif Hafizin
author_facet Abdul Rahim, Muhamad Najih
Awg Hamid, Dayang Tiawa
Muhamad Said, Mohd. Farid
Jamaludin, Mohd. Najeb
Rozalan, Hanif Hafizin
author_sort Abdul Rahim, Muhamad Najih
title Design and development of remotely operated vehicle to assess the water quality in aquaculture area
title_short Design and development of remotely operated vehicle to assess the water quality in aquaculture area
title_full Design and development of remotely operated vehicle to assess the water quality in aquaculture area
title_fullStr Design and development of remotely operated vehicle to assess the water quality in aquaculture area
title_full_unstemmed Design and development of remotely operated vehicle to assess the water quality in aquaculture area
title_sort design and development of remotely operated vehicle to assess the water quality in aquaculture area
publisher UniSZA
publishDate 2022
url http://eprints.utm.my/104798/1/MohdFarid2022_DesignandDevelopmentofRemotelyOperatedVehicle.pdf
http://eprints.utm.my/104798/
http://dx.doi.org/10.37231/apj.2022.5.2.409
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score 13.160551