Performance Evaluation of V2V Visible Light Communication: Coherence Time and Throughput in Motion Scenarios

Fuente: arXiv
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Main Authors: Hong, Jinrui, Liu, Xiayue, Li, Hanye, Jiang, Yufei
Format: Preprint
Published: 2025
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author Hong, Jinrui
Liu, Xiayue
Li, Hanye
Jiang, Yufei
author_facet Hong, Jinrui
Liu, Xiayue
Li, Hanye
Jiang, Yufei
contents This study evaluates the performance of Vehicle-to-Vehicle Visible Light Communication in dynamic environments, focusing on the effects of speed, horizontal offset, and other factors on communication reliability. Using On-Off Keying modulation, we analyze the BER, optimal communication distance, correlation time and the maximum amount of data per communication. Our results demonstrate that maintaining an optimal vehicle distance is critical for stable communication, with speed and horizontal offset significantly influencing communication. This work extends the analysis of V-VLC to real-world dynamic scenarios, providing insights for future research.
format Preprint
id arxiv_https___arxiv_org_abs_2503_00994
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Performance Evaluation of V2V Visible Light Communication: Coherence Time and Throughput in Motion Scenarios
Hong, Jinrui
Liu, Xiayue
Li, Hanye
Jiang, Yufei
Signal Processing
This study evaluates the performance of Vehicle-to-Vehicle Visible Light Communication in dynamic environments, focusing on the effects of speed, horizontal offset, and other factors on communication reliability. Using On-Off Keying modulation, we analyze the BER, optimal communication distance, correlation time and the maximum amount of data per communication. Our results demonstrate that maintaining an optimal vehicle distance is critical for stable communication, with speed and horizontal offset significantly influencing communication. This work extends the analysis of V-VLC to real-world dynamic scenarios, providing insights for future research.
title Performance Evaluation of V2V Visible Light Communication: Coherence Time and Throughput in Motion Scenarios
topic Signal Processing
url https://arxiv.org/abs/2503.00994