Vehicular Visible Light Communications

Author:

Turan Bugra,Ucar Seyhan

Publisher

InTech

Reference44 articles.

1. Digital Light [Internet]. 2017. Available from: https://www.mercedes-benz.com/en/mercedes-benz/next/advanced-engineering/digital-light-headlamps-in-hd-quality [Accessed: February 5, 2017]

2. ECE Regulation No. 48. Uniform provisions concerning the approval of vehicles with regard to the installation of lighting and light-signaling devices. vol. Rev.1/Add.47/Rev.6. pp. 52‐54

3. Bazzi A, Masini BM, Zanella A, Calisti A. Visible light communications as a complementary technology for the internet of vehicles. Computer Communications. 2016;93:39‐51

4. Abdelgader A, Lenan W. The physical layer of the IEEE 802.11 p WAVE Communication Standard: The specifications and challenges. Proceedings of the World Congress on Engineering and Computer Science. 2014;2:71

5. Turan B, Narmanlioglu O, Ergen SC, Uysal M. On the performance of mimo of dm-based intra-vehicular vlc networks. In: 2016 IEEE 84th Vehicular Technology Conference (VTC-Fall); September 18‐21, 2016; Montreal, QC, Canada: IEEE; 2016. pp. 1‐5

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1. A General Vehicular Visible Light Communication MIMO Channel Model;2023 11th International Conference on Intelligent Computing and Wireless Optical Communications (ICWOC);2023-06-16

2. Heterogeneous Visible Light and Radio Communication for Improving Safety Message Dissemination at Road Intersection;IEEE Transactions on Intelligent Transportation Systems;2022-10

3. Fundamental Analysis of Vehicular Light Communications and the Mitigation of Sunlight Noise;IEEE Transactions on Vehicular Technology;2021-06

4. Low Complexity Least Minimum Symbol Error Rate Based Post-Distortion for Vehicular VLC;IEEE Transactions on Vehicular Technology;2020-10

5. Unmanned-aerial-vehicle-assisted cooperative communications for visible light communications-based vehicular networks;Optical Engineering;2019-08-21

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