A depth-controlled and energy-efficient routing protocol for underwater wireless sensor networks

<p dir="ltr">Underwater wireless sensor network attracted massive attention from researchers. In underwater wireless sensor network, many sensor nodes are distributed at different depths in the sea. Due to its complex nature, updating their location or adding new devices is pretty ch...

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Main Author: Umesh Kumar Lilhore (17727684) (author)
Other Authors: Osamah Ibrahim Khalaf (17542107) (author), Sarita Simaiya (17727693) (author), Carlos Andrés Tavera Romero (19547821) (author), Ghaida Muttashar Abdulsahib (19547824) (author), Poongodi M (18394809) (author), Dinesh Kumar (81794) (author)
Published: 2022
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author Umesh Kumar Lilhore (17727684)
author2 Osamah Ibrahim Khalaf (17542107)
Sarita Simaiya (17727693)
Carlos Andrés Tavera Romero (19547821)
Ghaida Muttashar Abdulsahib (19547824)
Poongodi M (18394809)
Dinesh Kumar (81794)
author2_role author
author
author
author
author
author
author_facet Umesh Kumar Lilhore (17727684)
Osamah Ibrahim Khalaf (17542107)
Sarita Simaiya (17727693)
Carlos Andrés Tavera Romero (19547821)
Ghaida Muttashar Abdulsahib (19547824)
Poongodi M (18394809)
Dinesh Kumar (81794)
author_role author
dc.creator.none.fl_str_mv Umesh Kumar Lilhore (17727684)
Osamah Ibrahim Khalaf (17542107)
Sarita Simaiya (17727693)
Carlos Andrés Tavera Romero (19547821)
Ghaida Muttashar Abdulsahib (19547824)
Poongodi M (18394809)
Dinesh Kumar (81794)
dc.date.none.fl_str_mv 2022-09-08T03:00:00Z
dc.identifier.none.fl_str_mv 10.1177/15501329221117118
dc.relation.none.fl_str_mv https://figshare.com/articles/journal_contribution/A_depth-controlled_and_energy-efficient_routing_protocol_for_underwater_wireless_sensor_networks/26947006
dc.rights.none.fl_str_mv CC BY 4.0
info:eu-repo/semantics/openAccess
dc.subject.none.fl_str_mv Engineering
Communications engineering
Information and computing sciences
Computer vision and multimedia computation
Data management and data science
Depth-Controlled Routing
Genetic Algorithm
Data Fusion
Energy Management
Multi-Hop System
Cluster Head Node
Network Lifetime
dc.title.none.fl_str_mv A depth-controlled and energy-efficient routing protocol for underwater wireless sensor networks
dc.type.none.fl_str_mv Text
Journal contribution
info:eu-repo/semantics/publishedVersion
text
contribution to journal
description <p dir="ltr">Underwater wireless sensor network attracted massive attention from researchers. In underwater wireless sensor network, many sensor nodes are distributed at different depths in the sea. Due to its complex nature, updating their location or adding new devices is pretty challenging. Due to the constraints on energy storage of underwater wireless sensor network end devices and the complexity of repairing or recharging the device underwater, this is highly significant to strengthen the energy performance of underwater wireless sensor network. An imbalance in power consumption can cause poor performance and a limited network lifetime. To overcome these issues, we propose a depth controlled with energy-balanced routing protocol, which will be able to adjust the depth of lower energy nodes and be able to swap the lower energy nodes with higher energy nodes to ensure consistent energy utilization. The proposed energy-efficient routing protocol is based on an enhanced genetic algorithm and data fusion technique. In the proposed energy-efficient routing protocol, an existing genetic algorithm is enhanced by adding an encoding strategy, a crossover procedure, and an improved mutation operation that helps determine the nodes. The proposed model also utilized an enhanced back propagation neural network for data fusion operation, which is based on multi-hop system and also operates a highly optimized momentum technique, which helps to choose only optimum energy nodes and avoid duplicate selections that help to improve the overall energy and further reduce the quantity of data transmission. In the proposed energy-efficient routing protocol, an enhanced cluster head node is used to select a strategy that can analyze the remaining energy and directions of each participating node. In the simulation, the proposed model achieves 86.7% packet delivery ratio, 12.6% energy consumption, and 10.5% packet drop ratio over existing depth-based routing and energy-efficient depth-based routing methods for underwater wireless sensor network.</p><h2>Other Information</h2><p dir="ltr">Published in: International Journal of Distributed Sensor Networks<br>License: <a href="https://creativecommons.org/licenses/by/4.0/" target="_blank">https://creativecommons.org/licenses/by/4.0/</a><br>See article on publisher's website: <a href="https://dx.doi.org/10.1177/15501329221117118" target="_blank">https://dx.doi.org/10.1177/15501329221117118</a></p>
eu_rights_str_mv openAccess
id Manara2_908729b7c3bb533029a9dd8f84388837
identifier_str_mv 10.1177/15501329221117118
network_acronym_str Manara2
network_name_str Manara2
oai_identifier_str oai:figshare.com:article/26947006
publishDate 2022
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rights_invalid_str_mv CC BY 4.0
spelling A depth-controlled and energy-efficient routing protocol for underwater wireless sensor networksUmesh Kumar Lilhore (17727684)Osamah Ibrahim Khalaf (17542107)Sarita Simaiya (17727693)Carlos Andrés Tavera Romero (19547821)Ghaida Muttashar Abdulsahib (19547824)Poongodi M (18394809)Dinesh Kumar (81794)EngineeringCommunications engineeringInformation and computing sciencesComputer vision and multimedia computationData management and data scienceDepth-Controlled RoutingGenetic AlgorithmData FusionEnergy ManagementMulti-Hop SystemCluster Head NodeNetwork Lifetime<p dir="ltr">Underwater wireless sensor network attracted massive attention from researchers. In underwater wireless sensor network, many sensor nodes are distributed at different depths in the sea. Due to its complex nature, updating their location or adding new devices is pretty challenging. Due to the constraints on energy storage of underwater wireless sensor network end devices and the complexity of repairing or recharging the device underwater, this is highly significant to strengthen the energy performance of underwater wireless sensor network. An imbalance in power consumption can cause poor performance and a limited network lifetime. To overcome these issues, we propose a depth controlled with energy-balanced routing protocol, which will be able to adjust the depth of lower energy nodes and be able to swap the lower energy nodes with higher energy nodes to ensure consistent energy utilization. The proposed energy-efficient routing protocol is based on an enhanced genetic algorithm and data fusion technique. In the proposed energy-efficient routing protocol, an existing genetic algorithm is enhanced by adding an encoding strategy, a crossover procedure, and an improved mutation operation that helps determine the nodes. The proposed model also utilized an enhanced back propagation neural network for data fusion operation, which is based on multi-hop system and also operates a highly optimized momentum technique, which helps to choose only optimum energy nodes and avoid duplicate selections that help to improve the overall energy and further reduce the quantity of data transmission. In the proposed energy-efficient routing protocol, an enhanced cluster head node is used to select a strategy that can analyze the remaining energy and directions of each participating node. In the simulation, the proposed model achieves 86.7% packet delivery ratio, 12.6% energy consumption, and 10.5% packet drop ratio over existing depth-based routing and energy-efficient depth-based routing methods for underwater wireless sensor network.</p><h2>Other Information</h2><p dir="ltr">Published in: International Journal of Distributed Sensor Networks<br>License: <a href="https://creativecommons.org/licenses/by/4.0/" target="_blank">https://creativecommons.org/licenses/by/4.0/</a><br>See article on publisher's website: <a href="https://dx.doi.org/10.1177/15501329221117118" target="_blank">https://dx.doi.org/10.1177/15501329221117118</a></p>2022-09-08T03:00:00ZTextJournal contributioninfo:eu-repo/semantics/publishedVersiontextcontribution to journal10.1177/15501329221117118https://figshare.com/articles/journal_contribution/A_depth-controlled_and_energy-efficient_routing_protocol_for_underwater_wireless_sensor_networks/26947006CC BY 4.0info:eu-repo/semantics/openAccessoai:figshare.com:article/269470062022-09-08T03:00:00Z
spellingShingle A depth-controlled and energy-efficient routing protocol for underwater wireless sensor networks
Umesh Kumar Lilhore (17727684)
Engineering
Communications engineering
Information and computing sciences
Computer vision and multimedia computation
Data management and data science
Depth-Controlled Routing
Genetic Algorithm
Data Fusion
Energy Management
Multi-Hop System
Cluster Head Node
Network Lifetime
status_str publishedVersion
title A depth-controlled and energy-efficient routing protocol for underwater wireless sensor networks
title_full A depth-controlled and energy-efficient routing protocol for underwater wireless sensor networks
title_fullStr A depth-controlled and energy-efficient routing protocol for underwater wireless sensor networks
title_full_unstemmed A depth-controlled and energy-efficient routing protocol for underwater wireless sensor networks
title_short A depth-controlled and energy-efficient routing protocol for underwater wireless sensor networks
title_sort A depth-controlled and energy-efficient routing protocol for underwater wireless sensor networks
topic Engineering
Communications engineering
Information and computing sciences
Computer vision and multimedia computation
Data management and data science
Depth-Controlled Routing
Genetic Algorithm
Data Fusion
Energy Management
Multi-Hop System
Cluster Head Node
Network Lifetime