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Two Hop Adaptive Vector Based Quality Forwarding for Void Hole Avoidance in Underwater WSNs

Underwater wireless sensor networks (UWSNs) facilitate a wide range of aquatic applications in various domains. However, the harsh underwater environment poses challenges like low bandwidth, long propagation delay, high bit error rate, high deployment cost, irregular topological structure, etc. Node...

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Autores principales: Javaid, Nadeem, Ahmed, Farwa, Wadud, Zahid, Alrajeh, Nabil, Alabed, Mohamad Souheil, Ilahi, Manzoor
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5580076/
https://www.ncbi.nlm.nih.gov/pubmed/28763014
http://dx.doi.org/10.3390/s17081762
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author Javaid, Nadeem
Ahmed, Farwa
Wadud, Zahid
Alrajeh, Nabil
Alabed, Mohamad Souheil
Ilahi, Manzoor
author_facet Javaid, Nadeem
Ahmed, Farwa
Wadud, Zahid
Alrajeh, Nabil
Alabed, Mohamad Souheil
Ilahi, Manzoor
author_sort Javaid, Nadeem
collection PubMed
description Underwater wireless sensor networks (UWSNs) facilitate a wide range of aquatic applications in various domains. However, the harsh underwater environment poses challenges like low bandwidth, long propagation delay, high bit error rate, high deployment cost, irregular topological structure, etc. Node mobility and the uneven distribution of sensor nodes create void holes in UWSNs. Void hole creation has become a critical issue in UWSNs, as it severely affects the network performance. Avoiding void hole creation benefits better coverage over an area, less energy consumption in the network and high throughput. For this purpose, minimization of void hole probability particularly in local sparse regions is focused on in this paper. The two-hop adaptive hop by hop vector-based forwarding (2hop-AHH-VBF) protocol aims to avoid the void hole with the help of two-hop neighbor node information. The other protocol, quality forwarding adaptive hop by hop vector-based forwarding (QF-AHH-VBF), selects an optimal forwarder based on the composite priority function. QF-AHH-VBF improves network good-put because of optimal forwarder selection. QF-AHH-VBF aims to reduce void hole probability by optimally selecting next hop forwarders. To attain better network performance, mathematical problem formulation based on linear programming is performed. Simulation results show that by opting these mechanisms, significant reduction in end-to-end delay and better throughput are achieved in the network.
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spelling pubmed-55800762017-09-06 Two Hop Adaptive Vector Based Quality Forwarding for Void Hole Avoidance in Underwater WSNs Javaid, Nadeem Ahmed, Farwa Wadud, Zahid Alrajeh, Nabil Alabed, Mohamad Souheil Ilahi, Manzoor Sensors (Basel) Article Underwater wireless sensor networks (UWSNs) facilitate a wide range of aquatic applications in various domains. However, the harsh underwater environment poses challenges like low bandwidth, long propagation delay, high bit error rate, high deployment cost, irregular topological structure, etc. Node mobility and the uneven distribution of sensor nodes create void holes in UWSNs. Void hole creation has become a critical issue in UWSNs, as it severely affects the network performance. Avoiding void hole creation benefits better coverage over an area, less energy consumption in the network and high throughput. For this purpose, minimization of void hole probability particularly in local sparse regions is focused on in this paper. The two-hop adaptive hop by hop vector-based forwarding (2hop-AHH-VBF) protocol aims to avoid the void hole with the help of two-hop neighbor node information. The other protocol, quality forwarding adaptive hop by hop vector-based forwarding (QF-AHH-VBF), selects an optimal forwarder based on the composite priority function. QF-AHH-VBF improves network good-put because of optimal forwarder selection. QF-AHH-VBF aims to reduce void hole probability by optimally selecting next hop forwarders. To attain better network performance, mathematical problem formulation based on linear programming is performed. Simulation results show that by opting these mechanisms, significant reduction in end-to-end delay and better throughput are achieved in the network. MDPI 2017-08-01 /pmc/articles/PMC5580076/ /pubmed/28763014 http://dx.doi.org/10.3390/s17081762 Text en © 2017 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
Javaid, Nadeem
Ahmed, Farwa
Wadud, Zahid
Alrajeh, Nabil
Alabed, Mohamad Souheil
Ilahi, Manzoor
Two Hop Adaptive Vector Based Quality Forwarding for Void Hole Avoidance in Underwater WSNs
title Two Hop Adaptive Vector Based Quality Forwarding for Void Hole Avoidance in Underwater WSNs
title_full Two Hop Adaptive Vector Based Quality Forwarding for Void Hole Avoidance in Underwater WSNs
title_fullStr Two Hop Adaptive Vector Based Quality Forwarding for Void Hole Avoidance in Underwater WSNs
title_full_unstemmed Two Hop Adaptive Vector Based Quality Forwarding for Void Hole Avoidance in Underwater WSNs
title_short Two Hop Adaptive Vector Based Quality Forwarding for Void Hole Avoidance in Underwater WSNs
title_sort two hop adaptive vector based quality forwarding for void hole avoidance in underwater wsns
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5580076/
https://www.ncbi.nlm.nih.gov/pubmed/28763014
http://dx.doi.org/10.3390/s17081762
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