• Frontiers of Optoelectronics
  • Vol. 12, Issue 4, 405 (2019)
Fatah ALMABOUADA1、2、*, Manuel Adler ABREU3, Joo M. P. COELHO3, and Kamal Eddine AIADI4
Author Affiliations
  • 1Faculté des Mathématiques et des Sciences de la Matière, Département de Physique, Univérsité Kasdi Merbah Ouargla, Ouargla 30000, Algérie
  • 2Centre de Développement des Technologies Avancées, Division Milieux Ionisés & Lasers, Alger 16303, Algérie
  • 3Laboratório de óptica, Laser e Sistemas, Faculdade de Ciências da Universidade de Lisboa Campus do Lumiar, Estrada do Pa?o do Lumiar, Lisboa 1649-038, Portugal
  • 4Faculté des Mathématiques et des Sciences de la Matière, Laboratoire LENREZA, Univérsité Kasdi Merbah Ouargla, Ouargla 30000, Algérie
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    DOI: 10.1007/s12200-019-0865-x Cite this Article
    Fatah ALMABOUADA, Manuel Adler ABREU, Joo M. P. COELHO, Kamal Eddine AIADI. Experimental and simulation assessments of underwater light propagation[J]. Frontiers of Optoelectronics, 2019, 12(4): 405 Copy Citation Text show less
    References

    [1] Wan D Z, Chin C S. Simulation and prototype testing of a low-cost ultrasonic distance measurement device in underwater. Journal of Marine Science and Technology, 2015, 20(1): 142–154

    [2] Grelowska G, Kozaczka E, Kozaczka S, Szymczak W. Gdansk Bay sea bed sounding and classification of its results. Polish Maritime Research, 2013, 20(3): 45–50

    [3] Cho H, Gu J, Joe H, Asada A, Yu S C. Acoustic beam profile-based rapid underwater object detection for an imaging sonar. Journal of Marine Science and Technology, 2015, 20(1): 180–197

    [4] Molebny V, McManamon P, Steinvall O, Kobayashi T, Chen W. Laser radar: historical prospective—from the East to the West. Optical Engineering (Redondo Beach, Calif.), 2016, 56(3): 031220

    [5] Huang Y, Cao F, Jin W, Qiu S. Underwater pulsed laser range-gated imaging model and its effect on image degradation and restoration. Optical Engineering (Redondo Beach, Calif.), 2013, 53(6): 061608

    [6] Rumbaugh L K, Bollt EM, JemisonWD, Li Y F. A 532 nm chaotic Lidar transmitter for high resolution underwater ranging and imaging. In: Proceedings of Oceans-San Diego. San Diego: IEEE, 2013

    [7] Szulwic J, Burdziakowski P, Janowski A, Przyborski M, Tysi?c P, Wojtowicz A, Kholodkov A, Matysik K, Matysik M. Maritime laser scanning as the source for spatial data. Polish Maritime Research, 2015, 22(4): 9–14

    [8] Khairi M T M, Ibrahim S, Yunus M A M, Faramarzi M, Yusuf Z. Artificial neural network approach for predicting the water turbidity level using optical tomography. Arabian Journal for Science and Engineering, 2016, 41(9): 3369–3379

    [9] imileanu M, Radvan R, Puscas N. Underwater LIBS investigations setup for metals’ identification. University Politehnica Of Bucharest Scientific Bulletin-Series A–Applied Mathematics And Physics, 2010, 72(4): 209–216

    [10] Wojtanowski J, Mierczyk Z, Zygmunt M. Laser remote sensing of underwater objects. In: Proceedings of SPIE Remote Sensing of the Ocean, Sea Ice, and Large Water Regions. Cardiff, Wales: SPIE, 2008

    [11] Zeng X, Xia M, Cheng Z, Li L, Chen J, Du P, Yang K. A small-size pulsed Lidar designed for obstacles detection in natural underwater environment. In: Proceedings of Applied Optics and Photonics China (AOPC2015). Beijing: International Society for Optics and Photonics, 2015

    [12] AmannMC, Bosch TM, Lescure M, Myllylae R A, Rioux M. Laser ranging: a critical review of usual techniques for distance measurement. Optical Engineering (Redondo Beach, Calif.), 2001, 40(1): 10–19

    [13] Osche G R. Optical detection theory for laser applications. In: Osche G R, ed. Optical Detection Theory for Laser Applications. New York: Wiley-VCH, 2002, 424

    [14] Jelalian A V. Laser Radar Systems. New York: Artech House: 1992

    [15] Jerlov N. Classification of sea water in terms of quanta irradiance. Journal du Conseil, 1977, 37(3): 281–287

    [16] Mobley C D. Light andWater: Radiative Transfer in NaturalWaters. San Diego: Academic press: 1994

    [17] Morel A. Optical properties of pure water and pure sea water. Optical aspects of oceanography, 1974, 1: 1–24

    [18] Smith R C, Baker K S. Optical properties of the clearest natural waters (200?800 nm). Applied Optics, 1981, 20(2): 177–184

    [19] Boivin L P, Davidson W F, Storey R S, Sinclair D, Earle E D. Determination of the attenuation coefficients of visible and ultraviolet radiation in heavy water. Applied Optics, 1986, 25(6): 877–882

    [20] Sverdrup H U, Johnson M W, Fleming R H. The Oceans: Their Physics, Chemistry, and General Biology. New York: Prentice-Hall Inc., 1942, Vol. 7

    [21] Zemax Development Corporation. Zemax 13 Optical Design Program User’s Manual. 2014

    [22] Song Y, Chen Y, Xin J, Sun T. Two-dimensional beam shaping and homogenization of high power laser diode stack with rectangular waveguide. Frontiers of Optoelectronics, 2018, https://doi.org/ 10.1007/s12200-018-0831-z

    [23] Campazas A A, Cid M X A. Non-sequential modeling of commercial dichroic beamsplitters using Zemax. In: Proceedings of SPIE 9626, Optical Systems Design 2015: Optical Design and Engineering VI. Jena: SPIE, 2015, 96260C

    Fatah ALMABOUADA, Manuel Adler ABREU, Joo M. P. COELHO, Kamal Eddine AIADI. Experimental and simulation assessments of underwater light propagation[J]. Frontiers of Optoelectronics, 2019, 12(4): 405
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