Performance evaluation technique for screen‐to‐camera‐based optical camera communications
Abstract The increasing development and utilisation of optical camera communications offer an excellent opportunity for the implementation of the smartphone‐to‐smartphone‐based visible light communications (S2SVLC) system. In this study, the authors experimentally demonstrate that the S2SVLC system...
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Format: | Article |
Language: | English |
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Wiley
2023-08-01
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Series: | IET Optoelectronics |
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Online Access: | https://doi.org/10.1049/ote2.12102 |
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author | Vaigai Nayaki Yokar Hoa Le‐Minh Zabih Ghassemlooy Wai Lok Woo |
author_facet | Vaigai Nayaki Yokar Hoa Le‐Minh Zabih Ghassemlooy Wai Lok Woo |
author_sort | Vaigai Nayaki Yokar |
collection | DOAJ |
description | Abstract The increasing development and utilisation of optical camera communications offer an excellent opportunity for the implementation of the smartphone‐to‐smartphone‐based visible light communications (S2SVLC) system. In this study, the authors experimentally demonstrate that the S2SVLC system can support high‐quality multimedia transmissions by the investigation of the mean square error estimation, peak signal‐to‐noise (PSNR) degradation, bit error rate (BER), and data rate achieved. The experimental analysis has been carried out for different typical practical background illuminations (i.e., normal illumination and dark condition), distances, tilting, and rotation angles. The PSNR and BER are determined for different frame sizes in the S2SVLC system to provide an insight of system performance. Those results indicate that the data transmission at different conditions significantly impacts the system's performance. |
first_indexed | 2024-03-12T13:58:41Z |
format | Article |
id | doaj.art-4818303293f5402eb31b3e891050987d |
institution | Directory Open Access Journal |
issn | 1751-8768 1751-8776 |
language | English |
last_indexed | 2024-03-12T13:58:41Z |
publishDate | 2023-08-01 |
publisher | Wiley |
record_format | Article |
series | IET Optoelectronics |
spelling | doaj.art-4818303293f5402eb31b3e891050987d2023-08-22T09:08:19ZengWileyIET Optoelectronics1751-87681751-87762023-08-0117418419310.1049/ote2.12102Performance evaluation technique for screen‐to‐camera‐based optical camera communicationsVaigai Nayaki Yokar0Hoa Le‐Minh1Zabih Ghassemlooy2Wai Lok Woo3Optical Communications Research Group Department of Mathematics, Physics and Electrical Engineering Northumbria University Newcastle Upon Tyne UKOptical Communications Research Group Department of Mathematics, Physics and Electrical Engineering Northumbria University Newcastle Upon Tyne UKOptical Communications Research Group Department of Mathematics, Physics and Electrical Engineering Northumbria University Newcastle Upon Tyne UKDepartment of Computer and Information Sciences Northumbria University Newcastle Upon Tyne UKAbstract The increasing development and utilisation of optical camera communications offer an excellent opportunity for the implementation of the smartphone‐to‐smartphone‐based visible light communications (S2SVLC) system. In this study, the authors experimentally demonstrate that the S2SVLC system can support high‐quality multimedia transmissions by the investigation of the mean square error estimation, peak signal‐to‐noise (PSNR) degradation, bit error rate (BER), and data rate achieved. The experimental analysis has been carried out for different typical practical background illuminations (i.e., normal illumination and dark condition), distances, tilting, and rotation angles. The PSNR and BER are determined for different frame sizes in the S2SVLC system to provide an insight of system performance. Those results indicate that the data transmission at different conditions significantly impacts the system's performance.https://doi.org/10.1049/ote2.12102binary codesbrightnesscameraschannel estimationcomputational complexityencoding |
spellingShingle | Vaigai Nayaki Yokar Hoa Le‐Minh Zabih Ghassemlooy Wai Lok Woo Performance evaluation technique for screen‐to‐camera‐based optical camera communications IET Optoelectronics binary codes brightness cameras channel estimation computational complexity encoding |
title | Performance evaluation technique for screen‐to‐camera‐based optical camera communications |
title_full | Performance evaluation technique for screen‐to‐camera‐based optical camera communications |
title_fullStr | Performance evaluation technique for screen‐to‐camera‐based optical camera communications |
title_full_unstemmed | Performance evaluation technique for screen‐to‐camera‐based optical camera communications |
title_short | Performance evaluation technique for screen‐to‐camera‐based optical camera communications |
title_sort | performance evaluation technique for screen to camera based optical camera communications |
topic | binary codes brightness cameras channel estimation computational complexity encoding |
url | https://doi.org/10.1049/ote2.12102 |
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