CBE2R: clustered-based energy efficient routing protocol for underwater wireless sensor network

Routing in undersea environment is one of the challenging research areas due to the nature of acoustic channel and underwater harsh environment. In underwater environment, the major challenges are propagation delay, high bit error rates, limited bandwidth, uncontrolled node mobility, water current,...

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Main Authors: Ahmed, Mukhtiar, Salleh, Mazleena, Channa, M. Ibrahim
Format: Article
Published: Taylor & Francis Group 2018
Subjects:
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author Ahmed, Mukhtiar
Salleh, Mazleena
Channa, M. Ibrahim
author_facet Ahmed, Mukhtiar
Salleh, Mazleena
Channa, M. Ibrahim
author_sort Ahmed, Mukhtiar
collection ePrints
description Routing in undersea environment is one of the challenging research areas due to the nature of acoustic channel and underwater harsh environment. In underwater environment, the major challenges are propagation delay, high bit error rates, limited bandwidth, uncontrolled node mobility, water current, 3D deployment and limited resources. Hence, designing an efficient and communication protocols for underwater environment is a challenging issue. To control the node mobility and prolong the battery power of the nodes, we proposed Clustered-Based Energy Efficient Routing (CBE2R) protocol. CBE2R controls the node mobility and prolongs the battery power of nodes by dividing the water depth into seven numbers of layers from top to seabed. CBE2R prolongs the battery power through powerful static courier nodes which are deployed from sea surface to seabed on different layers. Clustered-based routing mechanism with highest weighted value for data forwarding is based on seabed to bottom layer courier nodes through ordinary nodes. Bottom layer courier nodes collects the information from ordinary nodes and forwards to surface sink nodes by maximum power levels (p1, p2, …., pn-1) through courier nodes which are deployed in different layers. For performance analysis the NS2.30 with AquaSim is used. The simulation results of CBE2R are compared with energy efficient REEP, EMGGR, and DRP. From simulation results it is observed that the performance CBE2R is higher than REEP, EMGGR and DRP.
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spelling utm.eprints-842972019-12-28T01:46:27Z http://eprints.utm.my/84297/ CBE2R: clustered-based energy efficient routing protocol for underwater wireless sensor network Ahmed, Mukhtiar Salleh, Mazleena Channa, M. Ibrahim QA75 Electronic computers. Computer science Routing in undersea environment is one of the challenging research areas due to the nature of acoustic channel and underwater harsh environment. In underwater environment, the major challenges are propagation delay, high bit error rates, limited bandwidth, uncontrolled node mobility, water current, 3D deployment and limited resources. Hence, designing an efficient and communication protocols for underwater environment is a challenging issue. To control the node mobility and prolong the battery power of the nodes, we proposed Clustered-Based Energy Efficient Routing (CBE2R) protocol. CBE2R controls the node mobility and prolongs the battery power of nodes by dividing the water depth into seven numbers of layers from top to seabed. CBE2R prolongs the battery power through powerful static courier nodes which are deployed from sea surface to seabed on different layers. Clustered-based routing mechanism with highest weighted value for data forwarding is based on seabed to bottom layer courier nodes through ordinary nodes. Bottom layer courier nodes collects the information from ordinary nodes and forwards to surface sink nodes by maximum power levels (p1, p2, …., pn-1) through courier nodes which are deployed in different layers. For performance analysis the NS2.30 with AquaSim is used. The simulation results of CBE2R are compared with energy efficient REEP, EMGGR, and DRP. From simulation results it is observed that the performance CBE2R is higher than REEP, EMGGR and DRP. Taylor & Francis Group 2018 Article PeerReviewed Ahmed, Mukhtiar and Salleh, Mazleena and Channa, M. Ibrahim (2018) CBE2R: clustered-based energy efficient routing protocol for underwater wireless sensor network. International Journal of Electronics, 105 (11). pp. 1916-1930. ISSN 0020-7217 https://doi.org/10.1080/00207217.2018.1494323
spellingShingle QA75 Electronic computers. Computer science
Ahmed, Mukhtiar
Salleh, Mazleena
Channa, M. Ibrahim
CBE2R: clustered-based energy efficient routing protocol for underwater wireless sensor network
title CBE2R: clustered-based energy efficient routing protocol for underwater wireless sensor network
title_full CBE2R: clustered-based energy efficient routing protocol for underwater wireless sensor network
title_fullStr CBE2R: clustered-based energy efficient routing protocol for underwater wireless sensor network
title_full_unstemmed CBE2R: clustered-based energy efficient routing protocol for underwater wireless sensor network
title_short CBE2R: clustered-based energy efficient routing protocol for underwater wireless sensor network
title_sort cbe2r clustered based energy efficient routing protocol for underwater wireless sensor network
topic QA75 Electronic computers. Computer science
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AT sallehmazleena cbe2rclusteredbasedenergyefficientroutingprotocolforunderwaterwirelesssensornetwork
AT channamibrahim cbe2rclusteredbasedenergyefficientroutingprotocolforunderwaterwirelesssensornetwork