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A Survey of Vehicular VLC Methodologies.

Rasha Al Hasnawi1, Ion Marghescu1

  • 1Department of Telecommunications, Faculty of Electronics, Telecommunications, and Information Technology, University Politehnica of Bucharest, 061071 Bucharest, Romania.

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|January 23, 2024
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Summary

Visible Light Communication (VLC) offers a promising alternative for vehicular networks, enhancing Intelligent Transportation Systems (ITSs). This survey details vehicular VLC systems, exploring their benefits and limitations for improved road safety and traffic flow.

Keywords:
channel modelinginfrastructure-to-vehicle VLCintelligent transportation system (ITS)vehicle-to-vehicle VLCvehicular VLCvisible light communication (VLC)

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Area of Science:

  • Engineering
  • Computer Science
  • Transportation Technology

Background:

  • Radio Frequency (RF)-based wireless communications face limitations in certain applications.
  • Visible Light Communication (VLC) is emerging as a viable alternative wireless technology.
  • VLC in vehicles holds significant potential for Intelligent Transportation Systems (ITSs).

Purpose of the Study:

  • To provide a comprehensive survey of vehicular Visible Light Communication (VLC) systems.
  • To present an overview of current developments in vehicular VLC.
  • To discuss the benefits and limitations of vehicular VLC for researchers and newcomers.

Main Methods:

  • Literature review of existing vehicular VLC systems.
  • Analysis of current technological advancements in the field.
  • Synthesis of information on benefits and drawbacks.

Main Results:

  • Vehicular VLC systems are being developed as a key component for ITSs.
  • VLC enables vehicle-to-infrastructure and vehicle-to-vehicle communication.
  • Key ITS goals like road safety, passenger comfort, and traffic flow can be enhanced.

Conclusions:

  • Vehicular VLC is a rapidly developing field with substantial potential for ITS.
  • Understanding the benefits and limitations is crucial for future research and implementation.
  • This survey serves as a valuable resource for both experienced researchers and those new to vehicular VLC.