• Acta Photonica Sinica
  • Vol. 50, Issue 12, 1201003 (2021)
Cong LI1, Ruiman YUAN2, Hong GAO2, Tinglu ZHANG2、*, Bo SUN1, Te CHEN1, and Guixing CAO1
Author Affiliations
  • 1Institute of Telecommunication and Navigation Satellites, China Academy of Space Technology, Beijing 100094, China
  • 2Department of Marine Technology, Ocean University of China, Qingdao , Shandong 266100, China
  • show less
    DOI: 10.3788/gzxb20215012.1201003 Cite this Article
    Cong LI, Ruiman YUAN, Hong GAO, Tinglu ZHANG, Bo SUN, Te CHEN, Guixing CAO. Characteristics of Blue-green Laser Downlink Cross-media Transmission under Different Weather Conditions[J]. Acta Photonica Sinica, 2021, 50(12): 1201003 Copy Citation Text show less
    References

    [1] A BUCHOLTZ. Rayleigh-scattering calculations for the terrestrial atmosphere. Applied Optics, 34, 2765-2773(1995).

    [3] E P SHETTLE, R W FENN. Models for the aerosols of the lower atmosphere and the effects of humidity variations on their optical properties(1979).

    [4] M HESS, P KOENKE, I SCHULT. Optical properties of aerosols and clouds: the software package OPAC. Bulletin of the American Meteorological Society, 79, 831-844(1998).

    [5] C S COX. Simulating channel losses in an underwater optical communication system. Journal of the Optical Society of America A, 31, 920-934(2014).

    [6] M ELAMASSIE, F MIRAMIRKHANI, M UVSAL. Performance characterization of underwater visible light communication. IEEE Transactions on Communications, 67, 543-552(2019).

    [7] S TANG, Y DONG, X ZHANG. Impulse response modeling for underwater wireless optical communication links. IEEE Transactions on Communications, 62, 226-234(2014).

    [8] Fengtao HE, Min WANG, Yi YANG. Analysis of spatial transmission characteristics of laser beam in seawater. Laser & Infrared, 48, 1346-1351(2018).

    [9] P CHEN, D PAN, Z MAO et al. Semi-analytic Monte Carlo radiative transfer model of laser propagation in inhomogeneous sea water within subsurface plankton layer. Optics & Laser Technology, 111, 1-5(2019).

    [10] Aiping HUANG, Yingluo ZHANG, Linwei TAO. Monte Carlo simulation on channel characteristics of underwater laser communications. Infrared and Laser Engineering, 46, 0422004(2017).

    [11] G C MOORADIAN, M GELLER. Temporal and angular spreading of blue-green pulses in clouds. Applied Optics, 21, 1572-1577(1982).

    [12] M AHARONOVICH, S AMON. Performance improvement of optical wireless communication through fog with a decision feedback equalizer. Journal of the Optical Society of America A, 22, 1646-1654(2005).

    [13] Hongxia WANG, Youzhang ZHU, Tao TIAN et al. Characteristics of laser transmission in different types of aerosols. Acta Physica Sinica, 62, 024214(2013).

    [14] Xiuhan HU, Tianhua ZHOU, Xiaolei ZHU et al. Simulation of downlink laser pulse propagation through clouds. Infrared, 36, 8-12(2015).

    [15] J W MCLEAN, J D FREEMAN. Effects of ocean waves on airborne lidar imaging. Applied Optics, 35, 3261-3629(1996).

    [16] Tianhua ZHOU, Weibiao CHEN, Yan HE et al. Beam spatial distribution of upward laser through sea-air interface. Chinese Journal of Lasers, 37, 1978-1982(2010).

    [17] Y DONG, S TANG, X ZHANG. Effect of random sea surface on downlink underwater wireless optical communications. IEEE Communications Letters, 17, 2165-2167(2013).

    [18] Li LIU, Peng YUE, Zongmin CUI. Monte Carlo simulation of uplink transmission across media. Journal of Xidian University, 46, 176-181(2019).

    [19] C D MOBLEY, B GENTILI, H R GORDON et al. Comparison of numerical models for computing underwater light fields. Applied Optics, 32, 7484-7504(1993).

    [20] R A LEATHERS, T V DOWNES, C D MOBLEY. Self-shading correction for oceanographic upwelling radiometers. Optics Express, 12, 4709-4718(2004).

    [21] P W ZHAI, G W KATTAWAR, P YANG. Impulse response solution to the three-dimensional vector radiative transfer equation in atmosphere-ocean systems. II. The hybrid matrix operator--Monte Carlo method. Applied Optics, 47, 1063-1071(2008).

    [22] C GABRIEL, M A KHALIGHI, S BOURENNANE et al. Monte-Carlo-based channel characterization for underwater optical communication systems. Journal of Optical Communications and Networking, 5, 1-12(2013).

    [23] R QADAR, M K KASI, S AYUB et al. Monte Carlo-based channel estimation and performance evaluation for UWOC links under geometric losses. International Journal of Communication Systems, 31, e3527(2018).

    [24] R M POPE, E S FRY. Absorption spectrum (380-700 nm) of pure water. II. Integrating cavity measurements. Applied Optics, 36, 8710-8723(1997).

    [25] A MOREL. Optical properties of pure water and pure sea water(1974).

    [26] A BRICAUD, A MOREL, M BABIN et al. Variations of light absorption by suspended particles with chlorophyll a concentration in oceanic (case 1) waters: Analysis and implications for bio-optical models. Journal of Geophysical Research Oceans, 103, 31033-31044(1998).

    [27] A MOREL, S MARITORENA. Bio-optical properties of oceanic waters: a reappraisal. Journal of Geophysical Research, 106, 7163-7180(2001).

    [28] R C SMITH, R W AUSTIN, T J PETZOLD. Volume-scattering functions in ocean waters. Suspended Solids in Water, Springer US(1974).

    [29] A BRICAUD, A MOREL, P LOUIS. Absorption by dissolved organic matter of the sea (yellow substance) in the UV and visible domains. Limnology and Oceanography, 26, 43-53(1981).

    [30] C S COX, W H MUNK. Statistics of the sea surface derived from sun glitter. Journal of Marine Research, 13, 198-227(1954).

    [31] CHANDRASEKHAR , SUBRAHMANYAN . Radiative transfer(1960).

    [32] N G JERLOV. Marine Optics(1976).

    [33] A MOREL. Optical modeling of the upper ocean in relation to its biogenous matter content (Case I waters). Journal of Geophysical Research, 93, 10749-10768(1988).

    Cong LI, Ruiman YUAN, Hong GAO, Tinglu ZHANG, Bo SUN, Te CHEN, Guixing CAO. Characteristics of Blue-green Laser Downlink Cross-media Transmission under Different Weather Conditions[J]. Acta Photonica Sinica, 2021, 50(12): 1201003
    Download Citation