Inspection-Class Remotely Operated Vehicles—A Review

This paper presents a review of inspection-class Remotely Operated Vehicles (ROVs). The review divides the classification of inspection-class ROVs; categorising the vehicles in order of size and capability. A state of the art technology review is undertaken, discussing various common subsystems of t...

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Main Authors: Romano Capocci, Gerard Dooly, Edin Omerdić, Joseph Coleman, Thomas Newe, Daniel Toal
Format: Article
Language:English
Published: MDPI AG 2017-03-01
Series:Journal of Marine Science and Engineering
Subjects:
ROV
Online Access:http://www.mdpi.com/2077-1312/5/1/13
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spelling doaj-67659f25ab6b41e2aac9104a2a5a03142021-04-02T09:06:34ZengMDPI AGJournal of Marine Science and Engineering2077-13122017-03-01511310.3390/jmse5010013jmse5010013Inspection-Class Remotely Operated Vehicles—A ReviewRomano Capocci0Gerard Dooly1Edin Omerdić2Joseph Coleman3Thomas Newe4Daniel Toal5Mobile and Marine Robotics Research Centre, University of Limerick, Castletroy, Limerick V94 T9PX, IrelandMobile and Marine Robotics Research Centre, University of Limerick, Castletroy, Limerick V94 T9PX, IrelandMobile and Marine Robotics Research Centre, University of Limerick, Castletroy, Limerick V94 T9PX, IrelandMobile and Marine Robotics Research Centre, University of Limerick, Castletroy, Limerick V94 T9PX, IrelandWireless Sensor Network Security Group, University of Limerick, Castletroy, Limerick V94 T9PX, IrelandMobile and Marine Robotics Research Centre, University of Limerick, Castletroy, Limerick V94 T9PX, IrelandThis paper presents a review of inspection-class Remotely Operated Vehicles (ROVs). The review divides the classification of inspection-class ROVs; categorising the vehicles in order of size and capability. A state of the art technology review is undertaken, discussing various common subsystems of the ROV. Standard and novel ROV shapes and designs are reviewed, with emphasis on buoyancy, frame materials and hydrodynamics. Several power considerations and designs are discussed, accounting for battery fed and mains fed systems. ROV telemetry is split into a discussion on the various transmission hardware systems and the communication protocols that are most widely used in industry and research today. A range of thruster technologies is then introduced with consideration taken of the various thruster architectures available. Finally, the navigation and positioning sensors employed for ROV navigation and control are reviewed. The author has also created a number of comparison tables throughout the review; tables include comparison of wired data transmission technology, comparison of common ROV communication protocols and comparisons of various inertial navigation systems. By the end of the review the reader will have clearer understanding on the fundamentals of inspection-class ROV technologies and can use this as an introduction to further paper investigation.http://www.mdpi.com/2077-1312/5/1/13marine roboticsremotely operated vehicleROVunderwater robotunderwater navigationsubsea vehicle
collection DOAJ
language English
format Article
sources DOAJ
author Romano Capocci
Gerard Dooly
Edin Omerdić
Joseph Coleman
Thomas Newe
Daniel Toal
spellingShingle Romano Capocci
Gerard Dooly
Edin Omerdić
Joseph Coleman
Thomas Newe
Daniel Toal
Inspection-Class Remotely Operated Vehicles—A Review
Journal of Marine Science and Engineering
marine robotics
remotely operated vehicle
ROV
underwater robot
underwater navigation
subsea vehicle
author_facet Romano Capocci
Gerard Dooly
Edin Omerdić
Joseph Coleman
Thomas Newe
Daniel Toal
author_sort Romano Capocci
title Inspection-Class Remotely Operated Vehicles—A Review
title_short Inspection-Class Remotely Operated Vehicles—A Review
title_full Inspection-Class Remotely Operated Vehicles—A Review
title_fullStr Inspection-Class Remotely Operated Vehicles—A Review
title_full_unstemmed Inspection-Class Remotely Operated Vehicles—A Review
title_sort inspection-class remotely operated vehicles—a review
publisher MDPI AG
series Journal of Marine Science and Engineering
issn 2077-1312
publishDate 2017-03-01
description This paper presents a review of inspection-class Remotely Operated Vehicles (ROVs). The review divides the classification of inspection-class ROVs; categorising the vehicles in order of size and capability. A state of the art technology review is undertaken, discussing various common subsystems of the ROV. Standard and novel ROV shapes and designs are reviewed, with emphasis on buoyancy, frame materials and hydrodynamics. Several power considerations and designs are discussed, accounting for battery fed and mains fed systems. ROV telemetry is split into a discussion on the various transmission hardware systems and the communication protocols that are most widely used in industry and research today. A range of thruster technologies is then introduced with consideration taken of the various thruster architectures available. Finally, the navigation and positioning sensors employed for ROV navigation and control are reviewed. The author has also created a number of comparison tables throughout the review; tables include comparison of wired data transmission technology, comparison of common ROV communication protocols and comparisons of various inertial navigation systems. By the end of the review the reader will have clearer understanding on the fundamentals of inspection-class ROV technologies and can use this as an introduction to further paper investigation.
topic marine robotics
remotely operated vehicle
ROV
underwater robot
underwater navigation
subsea vehicle
url http://www.mdpi.com/2077-1312/5/1/13
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AT gerarddooly inspectionclassremotelyoperatedvehiclesareview
AT edinomerdic inspectionclassremotelyoperatedvehiclesareview
AT josephcoleman inspectionclassremotelyoperatedvehiclesareview
AT thomasnewe inspectionclassremotelyoperatedvehiclesareview
AT danieltoal inspectionclassremotelyoperatedvehiclesareview
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