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QoSRP: A Cross-Layer QoS Channel-Aware Routing Protocol for the Internet of Underwater Acoustic Sensor Networks

Quality of service (QoS)-aware data gathering in static-channel based underwater wireless sensor networks (UWSNs) is severely limited due to location and time-dependent acoustic channel communication characteristics. This paper proposes a novel cross-layer QoS-aware multichannel routing protocol cal...

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Autores principales: Faheem, Muhammad, Butt, Rizwan Aslam, Raza, Basit, Alquhayz, Hani, Ashraf, Muhammad Waqar, Shah, Syed Bilal, Ngadi, Md Asri, Gungor, Vehbi Cagri
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6864616/
https://www.ncbi.nlm.nih.gov/pubmed/31684014
http://dx.doi.org/10.3390/s19214762
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author Faheem, Muhammad
Butt, Rizwan Aslam
Raza, Basit
Alquhayz, Hani
Ashraf, Muhammad Waqar
Shah, Syed Bilal
Ngadi, Md Asri
Gungor, Vehbi Cagri
author_facet Faheem, Muhammad
Butt, Rizwan Aslam
Raza, Basit
Alquhayz, Hani
Ashraf, Muhammad Waqar
Shah, Syed Bilal
Ngadi, Md Asri
Gungor, Vehbi Cagri
author_sort Faheem, Muhammad
collection PubMed
description Quality of service (QoS)-aware data gathering in static-channel based underwater wireless sensor networks (UWSNs) is severely limited due to location and time-dependent acoustic channel communication characteristics. This paper proposes a novel cross-layer QoS-aware multichannel routing protocol called QoSRP for the internet of UWSNs-based time-critical marine monitoring applications. The proposed QoSRP scheme considers the unique characteristics of the acoustic communication in highly dynamic network topology during gathering and relaying events data towards the sink. The proposed QoSRP scheme during the time-critical events data-gathering process employs three basic mechanisms, namely underwater channel detection (UWCD), underwater channel assignment (UWCA) and underwater packets forwarding (UWPF). The UWCD mechanism finds the vacant channels with a high probability of detection and low probability of missed detection and false alarms. The UWCA scheme assigns high data rates channels to acoustic sensor nodes (ASNs) with longer idle probability in a robust manner. Lastly, the UWPF mechanism during conveying information avoids congestion, data path loops and balances the data traffic load in UWSNs. The QoSRP scheme is validated through extensive simulations conducted by NS2 and AquaSim 2.0 in underwater environments (UWEs). The simulation results reveal that the QoSRP protocol performs better compared to existing routing schemes in UWSNs.
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spelling pubmed-68646162019-12-23 QoSRP: A Cross-Layer QoS Channel-Aware Routing Protocol for the Internet of Underwater Acoustic Sensor Networks Faheem, Muhammad Butt, Rizwan Aslam Raza, Basit Alquhayz, Hani Ashraf, Muhammad Waqar Shah, Syed Bilal Ngadi, Md Asri Gungor, Vehbi Cagri Sensors (Basel) Article Quality of service (QoS)-aware data gathering in static-channel based underwater wireless sensor networks (UWSNs) is severely limited due to location and time-dependent acoustic channel communication characteristics. This paper proposes a novel cross-layer QoS-aware multichannel routing protocol called QoSRP for the internet of UWSNs-based time-critical marine monitoring applications. The proposed QoSRP scheme considers the unique characteristics of the acoustic communication in highly dynamic network topology during gathering and relaying events data towards the sink. The proposed QoSRP scheme during the time-critical events data-gathering process employs three basic mechanisms, namely underwater channel detection (UWCD), underwater channel assignment (UWCA) and underwater packets forwarding (UWPF). The UWCD mechanism finds the vacant channels with a high probability of detection and low probability of missed detection and false alarms. The UWCA scheme assigns high data rates channels to acoustic sensor nodes (ASNs) with longer idle probability in a robust manner. Lastly, the UWPF mechanism during conveying information avoids congestion, data path loops and balances the data traffic load in UWSNs. The QoSRP scheme is validated through extensive simulations conducted by NS2 and AquaSim 2.0 in underwater environments (UWEs). The simulation results reveal that the QoSRP protocol performs better compared to existing routing schemes in UWSNs. MDPI 2019-11-02 /pmc/articles/PMC6864616/ /pubmed/31684014 http://dx.doi.org/10.3390/s19214762 Text en © 2019 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
Faheem, Muhammad
Butt, Rizwan Aslam
Raza, Basit
Alquhayz, Hani
Ashraf, Muhammad Waqar
Shah, Syed Bilal
Ngadi, Md Asri
Gungor, Vehbi Cagri
QoSRP: A Cross-Layer QoS Channel-Aware Routing Protocol for the Internet of Underwater Acoustic Sensor Networks
title QoSRP: A Cross-Layer QoS Channel-Aware Routing Protocol for the Internet of Underwater Acoustic Sensor Networks
title_full QoSRP: A Cross-Layer QoS Channel-Aware Routing Protocol for the Internet of Underwater Acoustic Sensor Networks
title_fullStr QoSRP: A Cross-Layer QoS Channel-Aware Routing Protocol for the Internet of Underwater Acoustic Sensor Networks
title_full_unstemmed QoSRP: A Cross-Layer QoS Channel-Aware Routing Protocol for the Internet of Underwater Acoustic Sensor Networks
title_short QoSRP: A Cross-Layer QoS Channel-Aware Routing Protocol for the Internet of Underwater Acoustic Sensor Networks
title_sort qosrp: a cross-layer qos channel-aware routing protocol for the internet of underwater acoustic sensor networks
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6864616/
https://www.ncbi.nlm.nih.gov/pubmed/31684014
http://dx.doi.org/10.3390/s19214762
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