An Enhanced Energy Balanced Data Transmission Protocol for Underwater Acoustic Sensor Networks
This paper presents two new energy balanced routing protocols for Underwater Acoustic Sensor Networks (UASNs); Efficient and Balanced Energy consumption Technique (EBET) and Enhanced EBET (EEBET). The first proposed protocol avoids direct transmission over long distance to save sufficient amount of...
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doaj-e5d3952744a74a2bab0a7a6ad9603e632020-11-24T21:58:36ZengMDPI AGSensors1424-82202016-04-0116448710.3390/s16040487s16040487An Enhanced Energy Balanced Data Transmission Protocol for Underwater Acoustic Sensor NetworksNadeem Javaid0Mehreen Shah1Ashfaq Ahmad2Muhammad Imran3Majid Iqbal Khan4Athanasios V. Vasilakos5COMSATS Institute of Information Technology, Islamabad 44000, PakistanAllama Iqbal Open University, Islamabad 44000, PakistanCOMSATS Institute of Information Technology, Islamabad 44000, PakistanKing Saud University, Riyadh 11451, Saudi ArabiaCOMSATS Institute of Information Technology, Islamabad 44000, PakistanLulea University of Technology, Luleå 971 87, SwedenThis paper presents two new energy balanced routing protocols for Underwater Acoustic Sensor Networks (UASNs); Efficient and Balanced Energy consumption Technique (EBET) and Enhanced EBET (EEBET). The first proposed protocol avoids direct transmission over long distance to save sufficient amount of energy consumed in the routing process. The second protocol overcomes the deficiencies in both Balanced Transmission Mechanism (BTM) and EBET techniques. EBET selects relay node on the basis of optimal distance threshold which leads to network lifetime prolongation. The initial energy of each sensor node is divided into energy levels for balanced energy consumption. Selection of high energy level node within transmission range avoids long distance direct data transmission. The EEBET incorporates depth threshold to minimize the number of hops between source node and sink while eradicating backward data transmissions. The EBET technique balances energy consumption within successive ring sectors, while, EEBET balances energy consumption of the entire network. In EEBET, optimum number of energy levels are also calculated to further enhance the network lifetime. Effectiveness of the proposed schemes is validated through simulations where these are compared with two existing routing protocols in terms of network lifetime, transmission loss, and throughput. The simulations are conducted under different network radii and varied number of nodes.http://www.mdpi.com/1424-8220/16/4/487underwater acoustic sensor networksrouting protocolnetwork lifetimeenergy consumptionthroughput |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Nadeem Javaid Mehreen Shah Ashfaq Ahmad Muhammad Imran Majid Iqbal Khan Athanasios V. Vasilakos |
spellingShingle |
Nadeem Javaid Mehreen Shah Ashfaq Ahmad Muhammad Imran Majid Iqbal Khan Athanasios V. Vasilakos An Enhanced Energy Balanced Data Transmission Protocol for Underwater Acoustic Sensor Networks Sensors underwater acoustic sensor networks routing protocol network lifetime energy consumption throughput |
author_facet |
Nadeem Javaid Mehreen Shah Ashfaq Ahmad Muhammad Imran Majid Iqbal Khan Athanasios V. Vasilakos |
author_sort |
Nadeem Javaid |
title |
An Enhanced Energy Balanced Data Transmission Protocol for Underwater Acoustic Sensor Networks |
title_short |
An Enhanced Energy Balanced Data Transmission Protocol for Underwater Acoustic Sensor Networks |
title_full |
An Enhanced Energy Balanced Data Transmission Protocol for Underwater Acoustic Sensor Networks |
title_fullStr |
An Enhanced Energy Balanced Data Transmission Protocol for Underwater Acoustic Sensor Networks |
title_full_unstemmed |
An Enhanced Energy Balanced Data Transmission Protocol for Underwater Acoustic Sensor Networks |
title_sort |
enhanced energy balanced data transmission protocol for underwater acoustic sensor networks |
publisher |
MDPI AG |
series |
Sensors |
issn |
1424-8220 |
publishDate |
2016-04-01 |
description |
This paper presents two new energy balanced routing protocols for Underwater Acoustic Sensor Networks (UASNs); Efficient and Balanced Energy consumption Technique (EBET) and Enhanced EBET (EEBET). The first proposed protocol avoids direct transmission over long distance to save sufficient amount of energy consumed in the routing process. The second protocol overcomes the deficiencies in both Balanced Transmission Mechanism (BTM) and EBET techniques. EBET selects relay node on the basis of optimal distance threshold which leads to network lifetime prolongation. The initial energy of each sensor node is divided into energy levels for balanced energy consumption. Selection of high energy level node within transmission range avoids long distance direct data transmission. The EEBET incorporates depth threshold to minimize the number of hops between source node and sink while eradicating backward data transmissions. The EBET technique balances energy consumption within successive ring sectors, while, EEBET balances energy consumption of the entire network. In EEBET, optimum number of energy levels are also calculated to further enhance the network lifetime. Effectiveness of the proposed schemes is validated through simulations where these are compared with two existing routing protocols in terms of network lifetime, transmission loss, and throughput. The simulations are conducted under different network radii and varied number of nodes. |
topic |
underwater acoustic sensor networks routing protocol network lifetime energy consumption throughput |
url |
http://www.mdpi.com/1424-8220/16/4/487 |
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