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A Radio Channel Model for D2D Communications Blocked by Single Trees in Forest Environments

In this paper we consider the D2D (Device-to-Device) communication taking place between Wireless Sensor Networks (WSN) elements operating in vegetation environments in order to achieve the radio channel characterization at 2.4 GHz, focusing on the radio links blocked by oak and pine trees modelled f...

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Autores principales: Picallo, Imanol, Klaina, Hicham, Lopez-Iturri, Peio, Aguirre, Erik, Celaya-Echarri, Mikel, Azpilicueta, Leyre, Eguizábal, Alejandro, Falcone, Francisco, Alejos, Ana
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6864777/
https://www.ncbi.nlm.nih.gov/pubmed/31652740
http://dx.doi.org/10.3390/s19214606
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author Picallo, Imanol
Klaina, Hicham
Lopez-Iturri, Peio
Aguirre, Erik
Celaya-Echarri, Mikel
Azpilicueta, Leyre
Eguizábal, Alejandro
Falcone, Francisco
Alejos, Ana
author_facet Picallo, Imanol
Klaina, Hicham
Lopez-Iturri, Peio
Aguirre, Erik
Celaya-Echarri, Mikel
Azpilicueta, Leyre
Eguizábal, Alejandro
Falcone, Francisco
Alejos, Ana
author_sort Picallo, Imanol
collection PubMed
description In this paper we consider the D2D (Device-to-Device) communication taking place between Wireless Sensor Networks (WSN) elements operating in vegetation environments in order to achieve the radio channel characterization at 2.4 GHz, focusing on the radio links blocked by oak and pine trees modelled from specimens found in a real recreation area located within forest environments. In order to fit and validate a radio channel model for this type of scenarios, both measurements and simulations by means of an in-house developed 3D Ray Launching algorithm have been performed, offering as outcomes the path loss and multipath information of the scenarios under study for forest immersed isolated trees and non-isolated trees. The specific forests, composed of thick in-leaf trees, are called Orgi Forest and Chandebrito, located respectively in Navarre and Galicia, Spain. A geometrical and dielectric model of the trees were created and introduced in the simulation software. We concluded that the scattering produced by the tree can be divided into two zones with different dominant propagation mechanisms: an obstructed line of sight (OLoS) zone far from the tree fitting a log-distance model, and a diffraction zone around the edge of the tree. 2D planes of delay spread value are also presented which similarly reflects the proposed two-zone model.
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spelling pubmed-68647772019-12-06 A Radio Channel Model for D2D Communications Blocked by Single Trees in Forest Environments Picallo, Imanol Klaina, Hicham Lopez-Iturri, Peio Aguirre, Erik Celaya-Echarri, Mikel Azpilicueta, Leyre Eguizábal, Alejandro Falcone, Francisco Alejos, Ana Sensors (Basel) Article In this paper we consider the D2D (Device-to-Device) communication taking place between Wireless Sensor Networks (WSN) elements operating in vegetation environments in order to achieve the radio channel characterization at 2.4 GHz, focusing on the radio links blocked by oak and pine trees modelled from specimens found in a real recreation area located within forest environments. In order to fit and validate a radio channel model for this type of scenarios, both measurements and simulations by means of an in-house developed 3D Ray Launching algorithm have been performed, offering as outcomes the path loss and multipath information of the scenarios under study for forest immersed isolated trees and non-isolated trees. The specific forests, composed of thick in-leaf trees, are called Orgi Forest and Chandebrito, located respectively in Navarre and Galicia, Spain. A geometrical and dielectric model of the trees were created and introduced in the simulation software. We concluded that the scattering produced by the tree can be divided into two zones with different dominant propagation mechanisms: an obstructed line of sight (OLoS) zone far from the tree fitting a log-distance model, and a diffraction zone around the edge of the tree. 2D planes of delay spread value are also presented which similarly reflects the proposed two-zone model. MDPI 2019-10-23 /pmc/articles/PMC6864777/ /pubmed/31652740 http://dx.doi.org/10.3390/s19214606 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
Picallo, Imanol
Klaina, Hicham
Lopez-Iturri, Peio
Aguirre, Erik
Celaya-Echarri, Mikel
Azpilicueta, Leyre
Eguizábal, Alejandro
Falcone, Francisco
Alejos, Ana
A Radio Channel Model for D2D Communications Blocked by Single Trees in Forest Environments
title A Radio Channel Model for D2D Communications Blocked by Single Trees in Forest Environments
title_full A Radio Channel Model for D2D Communications Blocked by Single Trees in Forest Environments
title_fullStr A Radio Channel Model for D2D Communications Blocked by Single Trees in Forest Environments
title_full_unstemmed A Radio Channel Model for D2D Communications Blocked by Single Trees in Forest Environments
title_short A Radio Channel Model for D2D Communications Blocked by Single Trees in Forest Environments
title_sort radio channel model for d2d communications blocked by single trees in forest environments
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6864777/
https://www.ncbi.nlm.nih.gov/pubmed/31652740
http://dx.doi.org/10.3390/s19214606
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