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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doaj-f7b9cf1538974ac6bb3ae0d4834ce03a2020-11-25T02:36:31ZengMDPI AGSensors1424-82202019-11-011921476210.3390/s19214762s19214762QoSRP: A Cross-Layer QoS Channel-Aware Routing Protocol for the Internet of Underwater Acoustic Sensor NetworksMuhammad Faheem0Rizwan Aslam Butt1Basit Raza2Hani Alquhayz3Muhammad Waqar Ashraf4Syed Bilal Shah5Md Asri Ngadi6Vehbi Cagri Gungor7Department of Computer Science, Universiti Teknologi Malaysia, Johor Bahru 81310, MalaysiaDepartment of Electronics Engineering, NED University of Engineering, Karachi 75270, PakistanDepartment of Computer Science, COMSATS University Islamabad (CUI), Islamabad 45550, PakistanDepartment of Computer Science and Information, College of Science in Zulfi, Majmaah University, Al-Majmaah 11952, Saudi ArabiaDepartment of Computer Engineering, Bahauddin Zakariya University, Multan 60800, PakistanDepartment of Communication Engineering, Dalian University of Technology, Dalian 8435088, ChinaDepartment of Computer Science, Universiti Teknologi Malaysia, Johor Bahru 81310, MalaysiaDepartment of Computer Engineering, Abdullah Gul University, Kayseri 38080, TurkeyQuality 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.https://www.mdpi.com/1424-8220/19/21/4762internet of underwater thingschannel awaremultichannelacoustic sensor networksunderwater wireless sensor network |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Muhammad Faheem Rizwan Aslam Butt Basit Raza Hani Alquhayz Muhammad Waqar Ashraf Syed Bilal Shah Md Asri Ngadi Vehbi Cagri Gungor |
spellingShingle |
Muhammad Faheem Rizwan Aslam Butt Basit Raza Hani Alquhayz Muhammad Waqar Ashraf Syed Bilal Shah Md Asri Ngadi Vehbi Cagri Gungor QoSRP: A Cross-Layer QoS Channel-Aware Routing Protocol for the Internet of Underwater Acoustic Sensor Networks Sensors internet of underwater things channel aware multichannel acoustic sensor networks underwater wireless sensor network |
author_facet |
Muhammad Faheem Rizwan Aslam Butt Basit Raza Hani Alquhayz Muhammad Waqar Ashraf Syed Bilal Shah Md Asri Ngadi Vehbi Cagri Gungor |
author_sort |
Muhammad Faheem |
title |
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_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_sort |
qosrp: a cross-layer qos channel-aware routing protocol for the internet of underwater acoustic sensor networks |
publisher |
MDPI AG |
series |
Sensors |
issn |
1424-8220 |
publishDate |
2019-11-01 |
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. |
topic |
internet of underwater things channel aware multichannel acoustic sensor networks underwater wireless sensor network |
url |
https://www.mdpi.com/1424-8220/19/21/4762 |
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