SDR-Based Vehicle-to-Vehicle OFDM VLC Communication System

Loading...
Thumbnail Image

Downloads

4

Date issued

Journal Title

Journal ISSN

Volume Title

Publisher

IEEE

Location

Signature

License

Abstract

This paper presents a novel software-defined radio (SDR) platform designed to measure the bit error rate (BER) in vehicle-to-vehicle visible light communication (V2V VLC) technology under real-world conditions. Unlike previous studies that have primarily relied on simulations or static tests, this research provides empirical evidence from both stationary and dynamic vehicular scenarios. The proposed system functions as an orthogonal frequency division multiplexing (OFDM) transceiver, employing multistate quadrature amplitude modulation (M-QAM) to modulate individual subcarriers. Extensive experiments were conducted to evaluate the system's performance, including the effects of varying headlight beam angles and vehicle distances on BER. Notably, stable communication was achieved using 64-QAM modulation at distances up to 10 meters, maintaining a BER below the critical threshold of 10(-5 .) These findings demonstrate the feasibility and robustness of integrating VLC with standard vehicle headlight systems, offering a viable solution for enhancing vehicular communication in dynamic traffic environments.

Description

Delayed publication

Available after

Subject(s)

bit error rate, headlight, multistate quadrature amplitude modulation, orthogonal frequency division multiplexing, software defined radio, visible light communication

Citation

IEEE Transactions on Intelligent Transportation Systems. 2026, vol. 27, issue 2, p. 1829-1846.