Towards Controlled Transmission: A Novel Power-Based Sparsity-Aware and Energy-Efficient Clustering for Underwater Sensor Networks in Marine Transport Safety

Energy-efficient management and highly reliable communication and transmission mechanisms are major issues in Underwater Wireless Sensor Networks (UWSN) due to the limited battery power of UWSN nodes within an harsh underwater environment. In this paper, we integrate the three main techniques that h...

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Veröffentlicht in:Electronics (Basel) 2021-04, Vol.10 (7), p.854, Article 854
Hauptverfasser: Hayder, Israa Adil, Khan, Sundas Naqeeb, Althobiani, Faisal, Irfan, Muhammad, Idrees, Muhammad, Ullah, Saeed, Alsaaq, Faisal, Glowacz, Adam, Goldasz, Iwona, Tomczyk, Marcin, Martis, Radu
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Sprache:eng
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Zusammenfassung:Energy-efficient management and highly reliable communication and transmission mechanisms are major issues in Underwater Wireless Sensor Networks (UWSN) due to the limited battery power of UWSN nodes within an harsh underwater environment. In this paper, we integrate the three main techniques that have been used for managing Transmission Power-based Sparsity-conscious Energy-Efficient Clustering (CTP-SEEC) in UWSNs. These incorporate the adaptive power control mechanism that converts to a suitable Transmission Power Level (TPL), and deploys collaboration mobile sinks or Autonomous Underwater Vehicles (AUVs) to gather information locally to achieve energy and data management efficiency (Security) in the WSN. The proposed protocol is rigorously evaluated through extensive simulations and is validated by comparing it with state-of-the-art UWSN protocols. The simulation results are based on the static environmental condition, which shows that the proposed protocol performs well in terms of network lifetime, packet delivery, and throughput.
ISSN:2079-9292
2079-9292
DOI:10.3390/electronics10070854