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Robust Resource Control Based on AP Selection in 6G-Enabled IoT Networks

The diverse application vertices of internet-of-things (IoT) including internet of vehicles (IoV), industrial IoT (IIoT) and internet of drones things (IoDT) involve intelligent communication between the massive number of objects around us. This digital transformation strives for seamless data flow,...

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Autores principales: Taneja, Ashu, Alqahtani, Ali, Saluja, Nitin, Alqahtani, Nayef
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10422430/
https://www.ncbi.nlm.nih.gov/pubmed/37571573
http://dx.doi.org/10.3390/s23156788
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author Taneja, Ashu
Alqahtani, Ali
Saluja, Nitin
Alqahtani, Nayef
author_facet Taneja, Ashu
Alqahtani, Ali
Saluja, Nitin
Alqahtani, Nayef
author_sort Taneja, Ashu
collection PubMed
description The diverse application vertices of internet-of-things (IoT) including internet of vehicles (IoV), industrial IoT (IIoT) and internet of drones things (IoDT) involve intelligent communication between the massive number of objects around us. This digital transformation strives for seamless data flow, uninterrupted communication capabilities, low latency and ultra-high reliability. The limited capabilities of fifth generation (5G) technology have given way to sixth generation (6G) wireless technology. This paper presents a dynamic cell-free framework for a 6G-enabled IoT network. A number of access points (APs) are distributed over a given geographical area to serve a large number of user nodes. A pilot-based AP selection (PBAS) algorithm is proposed, which offers robust resource control through AP selection based on pilots. Selecting a subset of APs against all APs for each user node results in improved performance. In this paper, the performance of the proposed transmission model is evaluated for the achieved data rate and spectral efficiency using the proposed algorithm. It is shown that the proposed PBAS algorithm improves the spectral efficiency by [Formula: see text] at the cell-edge and [Formula: see text] at the cell-center. A comparison of the different combining techniques used at different user locations is also provided, along with the mathematical formulations. Finally, the proposed model is compared with two other transmission models for performance evaluation. It is observed that the spectral efficiency achieved by an edge node with the proposed scheme is 5.3676 bits/s/Hz, compared to 0.756 bits/s/Hz and 1.0501 bits/s/Hz, attained with transmission schemes 1 and 2, respectively.
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spelling pubmed-104224302023-08-13 Robust Resource Control Based on AP Selection in 6G-Enabled IoT Networks Taneja, Ashu Alqahtani, Ali Saluja, Nitin Alqahtani, Nayef Sensors (Basel) Article The diverse application vertices of internet-of-things (IoT) including internet of vehicles (IoV), industrial IoT (IIoT) and internet of drones things (IoDT) involve intelligent communication between the massive number of objects around us. This digital transformation strives for seamless data flow, uninterrupted communication capabilities, low latency and ultra-high reliability. The limited capabilities of fifth generation (5G) technology have given way to sixth generation (6G) wireless technology. This paper presents a dynamic cell-free framework for a 6G-enabled IoT network. A number of access points (APs) are distributed over a given geographical area to serve a large number of user nodes. A pilot-based AP selection (PBAS) algorithm is proposed, which offers robust resource control through AP selection based on pilots. Selecting a subset of APs against all APs for each user node results in improved performance. In this paper, the performance of the proposed transmission model is evaluated for the achieved data rate and spectral efficiency using the proposed algorithm. It is shown that the proposed PBAS algorithm improves the spectral efficiency by [Formula: see text] at the cell-edge and [Formula: see text] at the cell-center. A comparison of the different combining techniques used at different user locations is also provided, along with the mathematical formulations. Finally, the proposed model is compared with two other transmission models for performance evaluation. It is observed that the spectral efficiency achieved by an edge node with the proposed scheme is 5.3676 bits/s/Hz, compared to 0.756 bits/s/Hz and 1.0501 bits/s/Hz, attained with transmission schemes 1 and 2, respectively. MDPI 2023-07-29 /pmc/articles/PMC10422430/ /pubmed/37571573 http://dx.doi.org/10.3390/s23156788 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/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 (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Taneja, Ashu
Alqahtani, Ali
Saluja, Nitin
Alqahtani, Nayef
Robust Resource Control Based on AP Selection in 6G-Enabled IoT Networks
title Robust Resource Control Based on AP Selection in 6G-Enabled IoT Networks
title_full Robust Resource Control Based on AP Selection in 6G-Enabled IoT Networks
title_fullStr Robust Resource Control Based on AP Selection in 6G-Enabled IoT Networks
title_full_unstemmed Robust Resource Control Based on AP Selection in 6G-Enabled IoT Networks
title_short Robust Resource Control Based on AP Selection in 6G-Enabled IoT Networks
title_sort robust resource control based on ap selection in 6g-enabled iot networks
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10422430/
https://www.ncbi.nlm.nih.gov/pubmed/37571573
http://dx.doi.org/10.3390/s23156788
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