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Energy harvesting based routing protocol for underwater sensor networks

Underwater sensor networks (UWSNs) are ad-hoc networks which are deployed at rivers, seas and oceans to explore and monitor the phenomena such as pollution control, seismic activities and petroleum mining etc. The sensor nodes of UWSNs have limited charging capabilities. UWSNs networks are generally...

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Autores principales: Khan, Adil, Khan, Mukhtaj, Ahmed, Sheeraz, Abd Rahman, Mohd Amiruddin, Khan, Mushtaq
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6636739/
https://www.ncbi.nlm.nih.gov/pubmed/31314772
http://dx.doi.org/10.1371/journal.pone.0219459
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author Khan, Adil
Khan, Mukhtaj
Ahmed, Sheeraz
Abd Rahman, Mohd Amiruddin
Khan, Mushtaq
author_facet Khan, Adil
Khan, Mukhtaj
Ahmed, Sheeraz
Abd Rahman, Mohd Amiruddin
Khan, Mushtaq
author_sort Khan, Adil
collection PubMed
description Underwater sensor networks (UWSNs) are ad-hoc networks which are deployed at rivers, seas and oceans to explore and monitor the phenomena such as pollution control, seismic activities and petroleum mining etc. The sensor nodes of UWSNs have limited charging capabilities. UWSNs networks are generally operated under two deployment mechanisms i.e localization and non-localization based. However, in both the mechanisms, balanced energy utilization is a challenging issue. Inefficient usage of energy significantly affects stability period, packet delivery ratio, end-to-end delay, path loss and throughput of a network. To efficiently utilize and harvest energy, this paper present a novel scheme called EH-ARCUN (Energy Harvesting Analytical approach towards Reliability with Cooperation for UWSNs) based on cooperation with energy harvesting. The scheme employs Amplify-and-Forward (AF) technique at relay nodes for data forwarding and Fixed Combining Ratio (FCR) technique at destination node to select accurate signal. The proposed technique selects relay nodes among its neighbor nodes based on harvested energy level. Most cooperation-based UWSN routing techniques do not exhibit energy harvesting mechanism at the relay nodes. EH-ARCUN deploys piezoelectric energy harvesting at relay nodes to improve the working capabilities of sensors in UWSNs. The proposed scheme is an extension of our previously implemented routing scheme called ARCUN for UWSNs. Performance of the proposed scheme is compared with ARCUN and RACE (Reliability and Adaptive Cooperation for efficient Underwater sensor Networks) schemes in term of stability period, packet delivery ratio, network throughput and path loss. Extensive simulation results show that EH-ARCUN performs better than both previous schemes in terms of the considered parameters.
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spelling pubmed-66367392019-07-25 Energy harvesting based routing protocol for underwater sensor networks Khan, Adil Khan, Mukhtaj Ahmed, Sheeraz Abd Rahman, Mohd Amiruddin Khan, Mushtaq PLoS One Research Article Underwater sensor networks (UWSNs) are ad-hoc networks which are deployed at rivers, seas and oceans to explore and monitor the phenomena such as pollution control, seismic activities and petroleum mining etc. The sensor nodes of UWSNs have limited charging capabilities. UWSNs networks are generally operated under two deployment mechanisms i.e localization and non-localization based. However, in both the mechanisms, balanced energy utilization is a challenging issue. Inefficient usage of energy significantly affects stability period, packet delivery ratio, end-to-end delay, path loss and throughput of a network. To efficiently utilize and harvest energy, this paper present a novel scheme called EH-ARCUN (Energy Harvesting Analytical approach towards Reliability with Cooperation for UWSNs) based on cooperation with energy harvesting. The scheme employs Amplify-and-Forward (AF) technique at relay nodes for data forwarding and Fixed Combining Ratio (FCR) technique at destination node to select accurate signal. The proposed technique selects relay nodes among its neighbor nodes based on harvested energy level. Most cooperation-based UWSN routing techniques do not exhibit energy harvesting mechanism at the relay nodes. EH-ARCUN deploys piezoelectric energy harvesting at relay nodes to improve the working capabilities of sensors in UWSNs. The proposed scheme is an extension of our previously implemented routing scheme called ARCUN for UWSNs. Performance of the proposed scheme is compared with ARCUN and RACE (Reliability and Adaptive Cooperation for efficient Underwater sensor Networks) schemes in term of stability period, packet delivery ratio, network throughput and path loss. Extensive simulation results show that EH-ARCUN performs better than both previous schemes in terms of the considered parameters. Public Library of Science 2019-07-17 /pmc/articles/PMC6636739/ /pubmed/31314772 http://dx.doi.org/10.1371/journal.pone.0219459 Text en © 2019 Khan et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Khan, Adil
Khan, Mukhtaj
Ahmed, Sheeraz
Abd Rahman, Mohd Amiruddin
Khan, Mushtaq
Energy harvesting based routing protocol for underwater sensor networks
title Energy harvesting based routing protocol for underwater sensor networks
title_full Energy harvesting based routing protocol for underwater sensor networks
title_fullStr Energy harvesting based routing protocol for underwater sensor networks
title_full_unstemmed Energy harvesting based routing protocol for underwater sensor networks
title_short Energy harvesting based routing protocol for underwater sensor networks
title_sort energy harvesting based routing protocol for underwater sensor networks
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6636739/
https://www.ncbi.nlm.nih.gov/pubmed/31314772
http://dx.doi.org/10.1371/journal.pone.0219459
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