Underwater Wireless Optical Communications Using Silicon Photo-Multipliers
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Salah Bourennane | Mohammad-Ali Khalighi | Tasnim Hamza | Pierre Léon | Jan Opderbecke | J. Opderbecke | M. Khalighi | S. Bourennane | T. Hamza | P. Léon
[1] S. Duntley. Light in the Sea , 1963 .
[2] I. Bankman,et al. Underwater optical communications systems. Part 2: basic design considerations , 2005, MILCOM 2005 - 2005 IEEE Military Communications Conference.
[3] Salah Bourennane,et al. Underwater wireless optical communication; recent advances and remaining challenges , 2014, 2014 16th International Conference on Transparent Optical Networks (ICTON).
[4] Linda Mullen,et al. Temporal Response of the Underwater Optical Channel for High-Bandwidth Wireless Laser Communications , 2013, IEEE Journal of Oceanic Engineering.
[5] V. Rigaud,et al. Monte-Carlo-based channel characterization for underwater optical communication systems , 2013, IEEE/OSA Journal of Optical Communications and Networking.
[6] S. Hranilovic,et al. Binary-input non-line-of-sight solar-blind UV channels: Modeling, capacity and coding , 2012, IEEE/OSA Journal of Optical Communications and Networking.
[7] Mohammad-Ali Khalighi,et al. Underwater Visible Light Communications, Channel Modeling and System Design , 2017 .
[8] D. O’brien,et al. A 200 Mb/s VLC demonstration with a SPAD based receiver , 2015, 2015 IEEE Summer Topicals Meeting Series (SUM).
[9] Stefan Videv,et al. Single photon avalanche diode (SPAD) VLC system and application to downhole monitoring , 2014, 2014 IEEE Global Communications Conference.
[10] Harald Haas,et al. Nonlinear Distortion in SPAD-Based Optical OFDM Systems , 2015, 2015 IEEE Globecom Workshops (GC Wkshps).
[11] F. Hanson,et al. High bandwidth underwater optical communication. , 2008, Applied optics.
[12] Changfeng Yu,et al. Feasibility study of Multi-Pixel Photon Counter serving as the detector in digital optical communications , 2013 .
[13] K. Baker,et al. Optical properties of the clearest natural waters (200-800 nm). , 1981, Applied optics.
[14] Zabih Ghassemlooy,et al. Performance of carrier-less amplitude and phase modulation with frequency domain equalization for indoor visible light communications , 2015, 2015 4th International Workshop on Optical Wireless Communications (IWOW).
[15] Philip Lacovara,et al. High-Bandwidth Underwater Communications , 2008 .
[16] A. Morel. Optical modeling of the upper ocean in relation to its biogenous matter content (case I waters) , 1988 .
[17] S. Bourennane,et al. A new underwater optical modem based on highly sensitive Silicon Photomultipliers , 2017, OCEANS 2017 - Aberdeen.
[18] H. Haas,et al. Optical OFDM With Single-Photon Avalanche Diode , 2015, IEEE Photonics Technology Letters.
[19] M. Khalighi,et al. Impact of different noise sources on the performance of PIN- and APD-based FSO receivers , 2011, Proceedings of the 11th International Conference on Telecommunications.
[20] S. Collins,et al. A SPAD-Based Photon Detecting System for Optical Communications , 2014, Journal of Lightwave Technology.
[21] Daniela Rus,et al. An End-to-End Signal Strength Model for Underwater Optical Communications , 2013, IEEE Journal of Oceanic Engineering.
[22] Salah Bourennane,et al. Investigation of solar noise impact on the performance of underwater wireless optical communication links. , 2016, Optics express.
[23] D. O'Brien,et al. A Gigabit/s Indoor Wireless Transmission Using MIMO-OFDM Visible-Light Communications , 2013, IEEE Photonics Technology Letters.
[24] Salah Bourennane,et al. On the suitability of employing silicon photomultipliers for underwater wireless optical communication links , 2016, 2016 10th International Symposium on Communication Systems, Networks and Digital Signal Processing (CSNDSP).
[25] Nuno Lourenço,et al. VLC for Indoor Positioning , 2017 .
[26] Joseph M. Kahn,et al. Wireless Infrared Communications , 1994 .
[27] B Wozniak,et al. Optical classifications of the seas in relation to phytoplankton characteristics , 1991 .
[28] Hong-Yi Yu,et al. A Long Distance Underwater Visible Light Communication System With Single Photon Avalanche Diode , 2016, IEEE Photonics Journal.
[29] V. Rigaud,et al. Investigation of suitable modulation techniques for underwater wireless optical communication , 2012, 2012 International Workshop on Optical Wireless Communications (IWOW).
[30] C. Mobley. Light and Water: Radiative Transfer in Natural Waters , 1994 .
[31] Dominic C. O'Brien,et al. Broadcasting over Photon-Counting Channels via Multiresolution PPM: Implementation and Experimental Results , 2012, IEEE Communications Letters.
[32] R. W. Austin,et al. Spectral dependence of the diffuse attenuation coefficient of light in ocean waters , 1986 .
[33] Chen Gong,et al. Channel Estimation and Signal Detection for Optical Wireless Scattering Communication With Inter-Symbol Interference , 2015, IEEE Transactions on Wireless Communications.
[34] Salah Bourennane,et al. Misalignment considerations in point-to-point underwater wireless optical links , 2013, 2013 MTS/IEEE OCEANS - Bergen.