An efficient Protocol for Enhanced Flynet Communication in Presence of Partitioning

This paper presents an adaptive fault-tolerant resource allocation protocol tailored for FlyNet, a dynamic aerial network characterized by its mobility and three-dimensional operational space. Addressing the challenges of network partitioning and resource allocation in aerial networks, the proposed...

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Main Authors: Tahar Allaoui, Mustapha Bouakkaz
Format: Article
Language:English
Published: Universidade Federal de Viçosa (UFV) 2024-10-01
Series:The Journal of Engineering and Exact Sciences
Subjects:
Online Access:https://periodicos.ufv.br/jcec/article/view/20064
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author Tahar Allaoui
Mustapha Bouakkaz
author_facet Tahar Allaoui
Mustapha Bouakkaz
author_sort Tahar Allaoui
collection DOAJ
description This paper presents an adaptive fault-tolerant resource allocation protocol tailored for FlyNet, a dynamic aerial network characterized by its mobility and three-dimensional operational space. Addressing the challenges of network partitioning and resource allocation in aerial networks, the proposed algorithm dynamically adjusts to the network's changing topology, ensuring consistent and efficient resource management. Through robust fault tolerance mechanisms, the protocol enhances FlyNet's reliability, maintaining seamless communication and optimal resource utilization even amid node mobility and disruptions. Simulation results demonstrate the algorithm's effectiveness in adapting to dynamic environments, maximizing resource utilization, and minimizing communication delays.
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issn 2527-1075
language English
publishDate 2024-10-01
publisher Universidade Federal de Viçosa (UFV)
record_format Article
series The Journal of Engineering and Exact Sciences
spelling doaj-art-9d83350afeac42918d8799120917aa752025-02-02T19:53:18ZengUniversidade Federal de Viçosa (UFV)The Journal of Engineering and Exact Sciences2527-10752024-10-0110710.18540/jcecvl10iss7pp20064An efficient Protocol for Enhanced Flynet Communication in Presence of PartitioningTahar Allaoui0Mustapha Bouakkaz1Laboratory of mathematics and computer sciences (LIM), University of Laghouat, AlgeriaLaboratory of mathematics and computer sciences (LIM), University of Laghouat, Algeria This paper presents an adaptive fault-tolerant resource allocation protocol tailored for FlyNet, a dynamic aerial network characterized by its mobility and three-dimensional operational space. Addressing the challenges of network partitioning and resource allocation in aerial networks, the proposed algorithm dynamically adjusts to the network's changing topology, ensuring consistent and efficient resource management. Through robust fault tolerance mechanisms, the protocol enhances FlyNet's reliability, maintaining seamless communication and optimal resource utilization even amid node mobility and disruptions. Simulation results demonstrate the algorithm's effectiveness in adapting to dynamic environments, maximizing resource utilization, and minimizing communication delays. https://periodicos.ufv.br/jcec/article/view/20064FlyNet. Fault-tolerant resource allocation. Dynamic air-to-air communication. Partitioning challenges. Uninterrupted operation.
spellingShingle Tahar Allaoui
Mustapha Bouakkaz
An efficient Protocol for Enhanced Flynet Communication in Presence of Partitioning
The Journal of Engineering and Exact Sciences
FlyNet. Fault-tolerant resource allocation. Dynamic air-to-air communication. Partitioning challenges. Uninterrupted operation.
title An efficient Protocol for Enhanced Flynet Communication in Presence of Partitioning
title_full An efficient Protocol for Enhanced Flynet Communication in Presence of Partitioning
title_fullStr An efficient Protocol for Enhanced Flynet Communication in Presence of Partitioning
title_full_unstemmed An efficient Protocol for Enhanced Flynet Communication in Presence of Partitioning
title_short An efficient Protocol for Enhanced Flynet Communication in Presence of Partitioning
title_sort efficient protocol for enhanced flynet communication in presence of partitioning
topic FlyNet. Fault-tolerant resource allocation. Dynamic air-to-air communication. Partitioning challenges. Uninterrupted operation.
url https://periodicos.ufv.br/jcec/article/view/20064
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