Self-Configuration Management towards Fix-Distributed Byzantine Sensors for Clustering Schemes in Wireless Sensor Networks

To avoid overloading a network, it is critical to continuously monitor the natural environment and disseminate data streams in synchronization. Based on self-maintaining technology, this study presents a technique called self-configuration management (SCM). The purpose is to ensure consistency in th...

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Main Authors: Walaa M. Elsayed, Engy El-Shafeiy, Mohamed Elhoseny, Mohammed K. Hassan
Format: Article
Language:English
Published: MDPI AG 2023-10-01
Series:Journal of Sensor and Actuator Networks
Subjects:
Online Access:https://www.mdpi.com/2224-2708/12/5/74
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author Walaa M. Elsayed
Engy El-Shafeiy
Mohamed Elhoseny
Mohammed K. Hassan
author_facet Walaa M. Elsayed
Engy El-Shafeiy
Mohamed Elhoseny
Mohammed K. Hassan
author_sort Walaa M. Elsayed
collection DOAJ
description To avoid overloading a network, it is critical to continuously monitor the natural environment and disseminate data streams in synchronization. Based on self-maintaining technology, this study presents a technique called self-configuration management (SCM). The purpose is to ensure consistency in the performance, functionality, and physical attributes of a wireless sensor network (WSN) over its lifetime. During device communication, the SCM approach delivers an operational software package for the radio board of system problematic nodes. We offered two techniques to help cluster heads manage autonomous configuration. First, we created a separate capability to determine which defective devices require the operating system (OS) replica. The software package was then delivered from the head node to the network’s malfunctioning device via communication roles. Second, we built an autonomous capability to automatically install software packages and arrange the time. The simulations revealed that the suggested technique was quick in transfers and used less energy. It also provided better coverage of system fault peaks than competitors. We used the proposed SCM approach to distribute homogenous sensor networks, and it increased system fault tolerance to 93.2%.
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spelling doaj.art-bd53e34d8c2b41cb9210064280c97b852023-11-19T17:02:59ZengMDPI AGJournal of Sensor and Actuator Networks2224-27082023-10-011257410.3390/jsan12050074Self-Configuration Management towards Fix-Distributed Byzantine Sensors for Clustering Schemes in Wireless Sensor NetworksWalaa M. Elsayed0Engy El-Shafeiy1Mohamed Elhoseny2Mohammed K. Hassan3Information Technology Department, Faculty of Computing and Informatics, Damanhour University, Damanhour 22511, EgyptComputer Science Department, Faculty of Computers & Artificial Intelligence, University of Sadat City, Sadat 32897, EgyptCollege of Computing and Informatics, University of Sharjah, Sharjah 4679, United Arab EmiratesMechatronics Department, Faculty of Engineering, Horus University–Egypt (HUE), New Damietta 34517, EgyptTo avoid overloading a network, it is critical to continuously monitor the natural environment and disseminate data streams in synchronization. Based on self-maintaining technology, this study presents a technique called self-configuration management (SCM). The purpose is to ensure consistency in the performance, functionality, and physical attributes of a wireless sensor network (WSN) over its lifetime. During device communication, the SCM approach delivers an operational software package for the radio board of system problematic nodes. We offered two techniques to help cluster heads manage autonomous configuration. First, we created a separate capability to determine which defective devices require the operating system (OS) replica. The software package was then delivered from the head node to the network’s malfunctioning device via communication roles. Second, we built an autonomous capability to automatically install software packages and arrange the time. The simulations revealed that the suggested technique was quick in transfers and used less energy. It also provided better coverage of system fault peaks than competitors. We used the proposed SCM approach to distribute homogenous sensor networks, and it increased system fault tolerance to 93.2%.https://www.mdpi.com/2224-2708/12/5/74WSNcluster headsensor nodeself-configurationself-diagnosisself-maintain
spellingShingle Walaa M. Elsayed
Engy El-Shafeiy
Mohamed Elhoseny
Mohammed K. Hassan
Self-Configuration Management towards Fix-Distributed Byzantine Sensors for Clustering Schemes in Wireless Sensor Networks
Journal of Sensor and Actuator Networks
WSN
cluster head
sensor node
self-configuration
self-diagnosis
self-maintain
title Self-Configuration Management towards Fix-Distributed Byzantine Sensors for Clustering Schemes in Wireless Sensor Networks
title_full Self-Configuration Management towards Fix-Distributed Byzantine Sensors for Clustering Schemes in Wireless Sensor Networks
title_fullStr Self-Configuration Management towards Fix-Distributed Byzantine Sensors for Clustering Schemes in Wireless Sensor Networks
title_full_unstemmed Self-Configuration Management towards Fix-Distributed Byzantine Sensors for Clustering Schemes in Wireless Sensor Networks
title_short Self-Configuration Management towards Fix-Distributed Byzantine Sensors for Clustering Schemes in Wireless Sensor Networks
title_sort self configuration management towards fix distributed byzantine sensors for clustering schemes in wireless sensor networks
topic WSN
cluster head
sensor node
self-configuration
self-diagnosis
self-maintain
url https://www.mdpi.com/2224-2708/12/5/74
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AT engyelshafeiy selfconfigurationmanagementtowardsfixdistributedbyzantinesensorsforclusteringschemesinwirelesssensornetworks
AT mohamedelhoseny selfconfigurationmanagementtowardsfixdistributedbyzantinesensorsforclusteringschemesinwirelesssensornetworks
AT mohammedkhassan selfconfigurationmanagementtowardsfixdistributedbyzantinesensorsforclusteringschemesinwirelesssensornetworks