Cargando…

Fuzzy Logic and Bio-Inspired Firefly Algorithm Based Routing Scheme in Intrabody Nanonetworks

An intrabody nanonetwork (IBNN) is composed of nanoscale (NS) devices, implanted inside the human body for collecting diverse physiological information for diagnostic and treatment purposes. The unique constraints of these NS devices in terms of energy, storage and computational resources are the pr...

Descripción completa

Detalles Bibliográficos
Autores principales: Fahim, Hamza, Li, Wei, Javaid, Shumaila, Sadiq Fareed, Mian Muhammad, Ahmed, Gulnaz, Khattak, Muhammad Kashif
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6960842/
https://www.ncbi.nlm.nih.gov/pubmed/31847300
http://dx.doi.org/10.3390/s19245526
_version_ 1783487862761586688
author Fahim, Hamza
Li, Wei
Javaid, Shumaila
Sadiq Fareed, Mian Muhammad
Ahmed, Gulnaz
Khattak, Muhammad Kashif
author_facet Fahim, Hamza
Li, Wei
Javaid, Shumaila
Sadiq Fareed, Mian Muhammad
Ahmed, Gulnaz
Khattak, Muhammad Kashif
author_sort Fahim, Hamza
collection PubMed
description An intrabody nanonetwork (IBNN) is composed of nanoscale (NS) devices, implanted inside the human body for collecting diverse physiological information for diagnostic and treatment purposes. The unique constraints of these NS devices in terms of energy, storage and computational resources are the primary challenges in the effective designing of routing protocols in IBNNs. Our proposed work explicitly considers these limitations and introduces a novel energy-efficient routing scheme based on a fuzzy logic and bio-inspired firefly algorithm. Our proposed fuzzy logic-based correlation region selection and bio-inspired firefly algorithm based nano biosensors (NBSs) nomination jointly contribute to energy conservation by minimizing transmission of correlated spatial data. Our proposed fuzzy logic-based correlation region selection mechanism aims at selecting those correlated regions for data aggregation that are enriched in terms of energy and detected information. While, for the selection of NBSs, we proposed a new bio-inspired firefly algorithm fitness function. The fitness function considers the transmission history and residual energy of NBSs to avoid exhaustion of NBSs in transmitting invaluable information. We conduct extensive simulations using the Nano-SIM tool to validate the in-depth impact of our proposed scheme in saving energy resources, reducing end-to-end delay and improving packet delivery ratio. The detailed comparison of our proposed scheme with different scenarios and flooding scheme confirms the significance of the optimized selection of correlated regions and NBSs in improving network lifetime and packet delivery ratio while reducing the average end-to-end delay.
format Online
Article
Text
id pubmed-6960842
institution National Center for Biotechnology Information
language English
publishDate 2019
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-69608422020-01-24 Fuzzy Logic and Bio-Inspired Firefly Algorithm Based Routing Scheme in Intrabody Nanonetworks Fahim, Hamza Li, Wei Javaid, Shumaila Sadiq Fareed, Mian Muhammad Ahmed, Gulnaz Khattak, Muhammad Kashif Sensors (Basel) Article An intrabody nanonetwork (IBNN) is composed of nanoscale (NS) devices, implanted inside the human body for collecting diverse physiological information for diagnostic and treatment purposes. The unique constraints of these NS devices in terms of energy, storage and computational resources are the primary challenges in the effective designing of routing protocols in IBNNs. Our proposed work explicitly considers these limitations and introduces a novel energy-efficient routing scheme based on a fuzzy logic and bio-inspired firefly algorithm. Our proposed fuzzy logic-based correlation region selection and bio-inspired firefly algorithm based nano biosensors (NBSs) nomination jointly contribute to energy conservation by minimizing transmission of correlated spatial data. Our proposed fuzzy logic-based correlation region selection mechanism aims at selecting those correlated regions for data aggregation that are enriched in terms of energy and detected information. While, for the selection of NBSs, we proposed a new bio-inspired firefly algorithm fitness function. The fitness function considers the transmission history and residual energy of NBSs to avoid exhaustion of NBSs in transmitting invaluable information. We conduct extensive simulations using the Nano-SIM tool to validate the in-depth impact of our proposed scheme in saving energy resources, reducing end-to-end delay and improving packet delivery ratio. The detailed comparison of our proposed scheme with different scenarios and flooding scheme confirms the significance of the optimized selection of correlated regions and NBSs in improving network lifetime and packet delivery ratio while reducing the average end-to-end delay. MDPI 2019-12-13 /pmc/articles/PMC6960842/ /pubmed/31847300 http://dx.doi.org/10.3390/s19245526 Text en © 2019 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Fahim, Hamza
Li, Wei
Javaid, Shumaila
Sadiq Fareed, Mian Muhammad
Ahmed, Gulnaz
Khattak, Muhammad Kashif
Fuzzy Logic and Bio-Inspired Firefly Algorithm Based Routing Scheme in Intrabody Nanonetworks
title Fuzzy Logic and Bio-Inspired Firefly Algorithm Based Routing Scheme in Intrabody Nanonetworks
title_full Fuzzy Logic and Bio-Inspired Firefly Algorithm Based Routing Scheme in Intrabody Nanonetworks
title_fullStr Fuzzy Logic and Bio-Inspired Firefly Algorithm Based Routing Scheme in Intrabody Nanonetworks
title_full_unstemmed Fuzzy Logic and Bio-Inspired Firefly Algorithm Based Routing Scheme in Intrabody Nanonetworks
title_short Fuzzy Logic and Bio-Inspired Firefly Algorithm Based Routing Scheme in Intrabody Nanonetworks
title_sort fuzzy logic and bio-inspired firefly algorithm based routing scheme in intrabody nanonetworks
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6960842/
https://www.ncbi.nlm.nih.gov/pubmed/31847300
http://dx.doi.org/10.3390/s19245526
work_keys_str_mv AT fahimhamza fuzzylogicandbioinspiredfireflyalgorithmbasedroutingschemeinintrabodynanonetworks
AT liwei fuzzylogicandbioinspiredfireflyalgorithmbasedroutingschemeinintrabodynanonetworks
AT javaidshumaila fuzzylogicandbioinspiredfireflyalgorithmbasedroutingschemeinintrabodynanonetworks
AT sadiqfareedmianmuhammad fuzzylogicandbioinspiredfireflyalgorithmbasedroutingschemeinintrabodynanonetworks
AT ahmedgulnaz fuzzylogicandbioinspiredfireflyalgorithmbasedroutingschemeinintrabodynanonetworks
AT khattakmuhammadkashif fuzzylogicandbioinspiredfireflyalgorithmbasedroutingschemeinintrabodynanonetworks