A secure and energy-efficient routing using coupled ensemble selection approach and optimal type-2 fuzzy logic in WSN

Abstract Wireless sensor networks (WSNs) are imperative to a huge range of packages, along with environmental monitoring, healthcare structures, army surveillance, and smart infrastructure, however they’re faced with numerous demanding situations that impede their functionality, including confined s...

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Main Authors: S. Ambareesh, Pundalik Chavan, S. Supreeth, Rajesh Nandalike, P. Dayananda, S. Rohith
Format: Article
Language:English
Published: Nature Portfolio 2025-01-01
Series:Scientific Reports
Subjects:
Online Access:https://doi.org/10.1038/s41598-024-82635-w
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author S. Ambareesh
Pundalik Chavan
S. Supreeth
Rajesh Nandalike
P. Dayananda
S. Rohith
author_facet S. Ambareesh
Pundalik Chavan
S. Supreeth
Rajesh Nandalike
P. Dayananda
S. Rohith
author_sort S. Ambareesh
collection DOAJ
description Abstract Wireless sensor networks (WSNs) are imperative to a huge range of packages, along with environmental monitoring, healthcare structures, army surveillance, and smart infrastructure, however they’re faced with numerous demanding situations that impede their functionality, including confined strength sources, routing inefficiencies, security vulnerabilities, excessive latency, and the important requirement to keep Quality of Service (QoS). Conventional strategies generally goal particular troubles, like strength optimization or improving QoS, frequently failing to provide a holistic answer that effectively balances more than one crucial elements concurrently. To deal with those challenges, we advocate a novel routing framework that is both steady and power-efficient, leveraging an Improved Type-2 Fuzzy Logic System (IT2FLS) optimized by means of the Reptile Search Algorithm (RSA). This modern framework employs weighted ensemble clustering and matched ensemble choice techniques, facilitating strong cluster formation and resulting in a substantial 98% development in community lifetime, an 80% enhancement in packet delivery ratio (PDR), and a 45% reduction in average power consumption while as compared to current protocols. The IT2FLS model dynamically adapts routing selections by means of assessing key parameters, consisting of dynamic accept as true with factors, node power ranges, course delays, and energy consumption fees, whilst the RSA algorithm exceptional-tunes the bushy common sense club features to make certain most beneficial cluster head choice and reliable multi-hop communication paths. Additionally, our proposed technique complements secure routing by means of efficaciously counteracting the effects of compromised nodes, for this reason maintaining community integrity. Multiple test results show that RSA’s enhanced IT2FLS system consistently outperforms new standards. It reduces end-to-end work by 25% and significantly increases productivity. These findings suggest that this robust routing model not only guarantees efficient data transmission and performance. But it also guarantees the stability of the overall network. This research contributes significantly to the WSN field by providing a comprehensive routing solution that integrates energy conservation, security, and QoS, ultimately extending the lifespan of WSNs and boosting confidence in critical applications, paving the way for implementation scenarios that require secure, low-power, and real-time data transmission.
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spelling doaj-art-d86d6bd39e4346b4a34d39682e3b5c0e2025-01-05T12:16:14ZengNature PortfolioScientific Reports2045-23222025-01-0115112410.1038/s41598-024-82635-wA secure and energy-efficient routing using coupled ensemble selection approach and optimal type-2 fuzzy logic in WSNS. Ambareesh0Pundalik Chavan1S. Supreeth2Rajesh Nandalike3P. Dayananda4S. Rohith5Department of Artificial Intelligence and Machine Learning, Sir M. Visvesvaraya Institute of TechnologySchool of Computer Science and Engineering, REVA UniversitySchool of Computer Science and Engineering, REVA UniversityDepartment of Electronics and Communication Engineering, Nitte Meenakshi Institute of TechnologyDepartment of Information Technology, Manipal Institute of Technology Bengaluru, Manipal Academy of Higher EducationDepartment of Electronics and Communication Engineering, Nagarjuna College of Engineering and TechnologyAbstract Wireless sensor networks (WSNs) are imperative to a huge range of packages, along with environmental monitoring, healthcare structures, army surveillance, and smart infrastructure, however they’re faced with numerous demanding situations that impede their functionality, including confined strength sources, routing inefficiencies, security vulnerabilities, excessive latency, and the important requirement to keep Quality of Service (QoS). Conventional strategies generally goal particular troubles, like strength optimization or improving QoS, frequently failing to provide a holistic answer that effectively balances more than one crucial elements concurrently. To deal with those challenges, we advocate a novel routing framework that is both steady and power-efficient, leveraging an Improved Type-2 Fuzzy Logic System (IT2FLS) optimized by means of the Reptile Search Algorithm (RSA). This modern framework employs weighted ensemble clustering and matched ensemble choice techniques, facilitating strong cluster formation and resulting in a substantial 98% development in community lifetime, an 80% enhancement in packet delivery ratio (PDR), and a 45% reduction in average power consumption while as compared to current protocols. The IT2FLS model dynamically adapts routing selections by means of assessing key parameters, consisting of dynamic accept as true with factors, node power ranges, course delays, and energy consumption fees, whilst the RSA algorithm exceptional-tunes the bushy common sense club features to make certain most beneficial cluster head choice and reliable multi-hop communication paths. Additionally, our proposed technique complements secure routing by means of efficaciously counteracting the effects of compromised nodes, for this reason maintaining community integrity. Multiple test results show that RSA’s enhanced IT2FLS system consistently outperforms new standards. It reduces end-to-end work by 25% and significantly increases productivity. These findings suggest that this robust routing model not only guarantees efficient data transmission and performance. But it also guarantees the stability of the overall network. This research contributes significantly to the WSN field by providing a comprehensive routing solution that integrates energy conservation, security, and QoS, ultimately extending the lifespan of WSNs and boosting confidence in critical applications, paving the way for implementation scenarios that require secure, low-power, and real-time data transmission.https://doi.org/10.1038/s41598-024-82635-wWireless Sensor NetworkClusteringRoutingQuality of serviceAnd energy efficiency
spellingShingle S. Ambareesh
Pundalik Chavan
S. Supreeth
Rajesh Nandalike
P. Dayananda
S. Rohith
A secure and energy-efficient routing using coupled ensemble selection approach and optimal type-2 fuzzy logic in WSN
Scientific Reports
Wireless Sensor Network
Clustering
Routing
Quality of service
And energy efficiency
title A secure and energy-efficient routing using coupled ensemble selection approach and optimal type-2 fuzzy logic in WSN
title_full A secure and energy-efficient routing using coupled ensemble selection approach and optimal type-2 fuzzy logic in WSN
title_fullStr A secure and energy-efficient routing using coupled ensemble selection approach and optimal type-2 fuzzy logic in WSN
title_full_unstemmed A secure and energy-efficient routing using coupled ensemble selection approach and optimal type-2 fuzzy logic in WSN
title_short A secure and energy-efficient routing using coupled ensemble selection approach and optimal type-2 fuzzy logic in WSN
title_sort secure and energy efficient routing using coupled ensemble selection approach and optimal type 2 fuzzy logic in wsn
topic Wireless Sensor Network
Clustering
Routing
Quality of service
And energy efficiency
url https://doi.org/10.1038/s41598-024-82635-w
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