A. G. Bell, The photophone, Journal of the Franklin Institute, vol.110, issue.4, pp.237-248
DOI : 10.1016/0016-0032(80)90543-8

T. Komine and M. Nakagawa, Fundamental analysis for visible-light communication system using LED lights, IEEE Transactions on Consumer Electronics, vol.50, issue.1, 2004.
DOI : 10.1109/TCE.2004.1277847

H. Elgala, R. Mesleh, and H. Haas, Indoor broadcasting via white LEDs and OFDM, IEEE Transactions on Consumer Electronics, vol.55, issue.3, pp.1127-1134, 2009.
DOI : 10.1109/TCE.2009.5277966

S. Rajagopal, R. D. Roberts, and L. Sang-kyu, IEEE 802.15.7 visible light communication: modulation schemes and dimming support, IEEE Communications Magazine, vol.50, issue.3, pp.72-82
DOI : 10.1109/MCOM.2012.6163585

Q. Wang, D. Giustiniano, and D. Puccinelli, OpenVLC, Proceedings of the 1st ACM MobiCom workshop on Visible light communication systems, VLCS '14, 2015.
DOI : 10.1145/2643164.2643167

Q. Wang, M. Zuniga, and D. Giustiniano, Passive Communication with Ambient Light, Proceedings of the 12th International on Conference on emerging Networking EXperiments and Technologies, CoNEXT '16, 2016.
DOI : 10.1145/2789168.2790115

URL : http://arxiv.org/abs/1512.04362

C. G. Gavrincea, J. Baranda, and P. Henarejos, Rapid prototyping of standard-compliant visible light communications system, IEEE Communications Magazine, vol.52, issue.7, 2014.
DOI : 10.1109/MCOM.2014.6852087

J. Baranda, P. Henarejos, and C. G. Gavrincea, An SDR implementation of a visible light communication system based on the IEEE 802.15.7 standard, ICT 2013, p.2013
DOI : 10.1109/ICTEL.2013.6632076

W. Hussain, H. Fatih-ugurdag, and M. , Software defined VLC system: Implementation and performance evaluation, 2015 4th International Workshop on Optical Wireless Communications (IWOW), p.2015
DOI : 10.1109/IWOW.2015.7342278

D. C. Thomas, H. Little, and . Elgala, Adaptation of OFDM under Visible Light Communications and Illumination Constraints, 48 th Conference on Signal, Systems and Computers, 2014.

A. Mirvakili, V. J. Koomson, M. Rahaim, H. Elgala, and T. D. Little, Wireless access test-bed through visible light and dimming compatible OFDM, 2015 IEEE Wireless Communications and Networking Conference (WCNC), 2015.
DOI : 10.1109/WCNC.2015.7127820

E. Grayver, Implementing Software Defined Radio, pp.145-146, 2013.
DOI : 10.1007/978-1-4419-9332-8

S. Costanzo, F. Spadafora, A. Borgia, O. H. Moreno, A. Costanzo et al., High Resolution Software Defined Radar System for Target Detection, Advances in Information Systems and Technologies, pp.997-1005, 2013.
DOI : 10.1007/978-3-642-36981-0_94

N. Usrp-2920, W. Zhou, G. Villemaud, and T. Risset, NI USRP-2921 National Instruments Data-sheet, Full Duplex Prototype of OFDM on GNURadio and USRPs IEEE Radio Wireless Symposium, 2014.

P. Deng and M. Cavehrad, Adaptive real-time software defined MIMO visible light communications using spatial multiplexing and spatial diversity, 2016 IEEE International Conference on Wireless for Space and Extreme Environments (WiSEE), 2016.
DOI : 10.1109/WiSEE.2016.7877314

M. B. Rahaim, A. M. Vegni, and T. D. Little, A hybrid Radio Frequency and broadcast Visible Light Communication system, 2011 IEEE GLOBECOM Workshops (GC Wkshps), 2011.
DOI : 10.1109/GLOCOMW.2011.6162563

URL : http://hulk.bu.edu/pubs/papers/2011/TR-2011-09-11.pdf

X. Li, R. Zhang, and L. Hanzo, Cooperative Load Balancing in Hybrid Visible Light Communications and WiFi, IEEE Transactions on Communications, vol.63, issue.4, pp.1319-1329, 2015.
DOI : 10.1109/TCOMM.2015.2409172

S. Shao, A. Khreishah, M. Ayyash, M. B. Rahaim, H. Elgala et al., Design and Analysis of a Visible-Light-Communication Enhanced WiFi System, Journal of Optical Communications and Networking, vol.7, issue.10, pp.960-973, 2015.
DOI : 10.1364/JOCN.7.000960