Funder
Polish Ministry of Science and Higher Education
Publisher
Springer Science and Business Media LLC
Subject
Electrical and Electronic Engineering,Computer Science Applications
Reference30 articles.
1. Nakagawa, M. (2007). Visible light communications. In Proceedings conference on Lasers and Electro-Optics/Quantum electronics and laser science conference and photonic applications systems technologies, Baltimore. doi: 10.1109/CCNC.2012.6181092
2. Elgala, H., Mesleh, R., & Haas, H. (2011). Indoor optical wireless communication: Potential and state-of-the-art. IEEE Communications Magazine, 49(9), 56–62.
3. Tsiatmas, A., Baggen, C. P. A., Willems, F. M., Linnartz, J. P., & Bergmans, J. W. (2014). An illumination perspective on visible light communications. Communications Magazine IEEE, 52(7), 64–71.
4. Samsung Electronics, ETRI, VLCC, University of Oxford (2008). Visible light communication: Tutorial. http://www.ieee802.org/802_tutorials/2008-03/15-08-0114-02-0000-VLC_Tutorial_MCO_Samsung-VLCC-Oxford_2008-03-17.pdf
5. Rahaim, M. B., Vegni, A.M. & Little, T. D. (2011). A hybrid radio frequency and broadcast visible light communication system. In Proceedings IEEE global communications conference (GLOBECOM) Workshops (pp. 792–796).
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