Channel modelling for light communications: Validation of ray tracing by measurements

Title Channel modelling for light communications: Validation of ray tracing by measurements
Author Eldeeb, Hossıen Badr, Uysal, Murat, Mana, S. M., Hellwig, P., Hilt, J., Jungnickel, V.
Publication Date: 2020
Publication Place - IEEE
Subject Light communications, Optical wireless communications, Channel modeling, Ray tracing, Channel measurements
Type Document
Language English
Digital Yes
Manuscript No
Library: Özyeğin University
Library Asset ID 978-172816743-5
Record ID 9a259733-10ff-49db-947f-031f33a44d1a
Library Location Electrical & Electronics Engineering
Date 2020
Notes TÜBİTAK ; Horizon 2020 Framework Programme
Sample Text Light communications, also denoted as LiFi, is promising for future wireless indoor networks. For performance evaluation, the IEEE P802.15.13 and P802.11bb standardization groups agreed upon channel models based on non-sequential ray tracing. In this paper, we validate the modeling approach behind by means of measurements. The same indoor scenarios, where measurements took place in 200 MHz bandwidth, have been modeled in 3D and applying ray tracing. We show that the mean-square error between simulation and measurement is below 2%. Finally, we investigate important channel parameters like path loss and coherence bandwidth as a function of distance with and without line-of-sight.
DOI 10.1109/CSNDSP49049.2020.9249565
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Channel modelling for light communications: Validation of ray tracing by measurements

Author Eldeeb, Hossıen Badr, Uysal, Murat, Mana, S. M., Hellwig, P., Hilt, J., Jungnickel, V.
Publication Date 2020
Publication Place - IEEE
Subject Light communications, Optical wireless communications, Channel modeling, Ray tracing, Channel measurements
Type Document
Language English
Digital Yes
Manuscript No
Library Özyeğin University
Library Asset ID 978-172816743-5
Record ID 9a259733-10ff-49db-947f-031f33a44d1a
Library Location Electrical & Electronics Engineering
Date 2020
Notes TÜBİTAK ; Horizon 2020 Framework Programme
Sample Text Light communications, also denoted as LiFi, is promising for future wireless indoor networks. For performance evaluation, the IEEE P802.15.13 and P802.11bb standardization groups agreed upon channel models based on non-sequential ray tracing. In this paper, we validate the modeling approach behind by means of measurements. The same indoor scenarios, where measurements took place in 200 MHz bandwidth, have been modeled in 3D and applying ray tracing. We show that the mean-square error between simulation and measurement is below 2%. Finally, we investigate important channel parameters like path loss and coherence bandwidth as a function of distance with and without line-of-sight.
DOI 10.1109/CSNDSP49049.2020.9249565
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