A Robust UWOC-assisted Multi-hop Topology for Underwater Sensor Network Nodes

Fuente: arXiv
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Main Authors: Salman, Maaz, Bolboli, Javad, Chung, Wan-Young
Format: Preprint
Published: 2024
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author Salman, Maaz
Bolboli, Javad
Chung, Wan-Young
author_facet Salman, Maaz
Bolboli, Javad
Chung, Wan-Young
contents Underwater environment is substantially less explored territory as compared to earth surface due to lack of robust underwater communication infrastructure. For Internet of Underwater things connectivity, underwater wireless optical communication can play a vital role, compared to conventional radio frequency communication, due to longer range, high data rate, low latency, and unregulated bandwidth. This study proposes underwater wireless optical communication driven local area network UWOC LAN, comprised of multiple network nodes with optical transceivers. Moreover, the temperature sensor data is encapsulated with individual authentication identity to enhance the security of the framework at the user end. The proposed system is evaluated in a specially designed water tank of 4 meters. The proposed system evaluation analysis shows that the system can transmit underwater temperature data reliably in real time. The proposed secure UWOC LAN is tested within a communication range of 16 meters by incorporating multi hop connectivity to monitor the underwater environment.
format Preprint
id arxiv_https___arxiv_org_abs_2403_19180
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle A Robust UWOC-assisted Multi-hop Topology for Underwater Sensor Network Nodes
Salman, Maaz
Bolboli, Javad
Chung, Wan-Young
Signal Processing
Emerging Technologies
Underwater environment is substantially less explored territory as compared to earth surface due to lack of robust underwater communication infrastructure. For Internet of Underwater things connectivity, underwater wireless optical communication can play a vital role, compared to conventional radio frequency communication, due to longer range, high data rate, low latency, and unregulated bandwidth. This study proposes underwater wireless optical communication driven local area network UWOC LAN, comprised of multiple network nodes with optical transceivers. Moreover, the temperature sensor data is encapsulated with individual authentication identity to enhance the security of the framework at the user end. The proposed system is evaluated in a specially designed water tank of 4 meters. The proposed system evaluation analysis shows that the system can transmit underwater temperature data reliably in real time. The proposed secure UWOC LAN is tested within a communication range of 16 meters by incorporating multi hop connectivity to monitor the underwater environment.
title A Robust UWOC-assisted Multi-hop Topology for Underwater Sensor Network Nodes
topic Signal Processing
Emerging Technologies
url https://arxiv.org/abs/2403.19180