[1] Chen G, Xu Z, Sadler B M. Experimental demonstration of ultraviolet pulse broadening in short-range non-line-of-sight communication channels[J]. Optics Express, 2010, 18(10):10500-10509.
[2] Qiang R, Zhao S, Wang X, et al. Ultraviolet multipath scattering link model under the influence of high altitude turbulence[J]. Chinese Journal of Lasers, 2014, 41(6):108-114.
[3] Han D, Liu Y, Zhang K, et al. Theoretical and experimental research on diversity reception technology in NLOS UV communication system[J]. Optics Express, 2012, 20(14):15833-15842.
[4] Xiao H, Zuo Y, Wu J, et al. Bit-error-rate performance of non-line-of-sight UV transmission with spatial diversity reception.[J]. Optics Letters, 2012, 37(19):4143-4145.
[5] Zhang H, Yin H, Jia H, et al. Study of effects of obstacle on non-line-of-sight ultraviolet communication links[J]. Optics Express, 2011, 19(22):21216-21226.
[6] Zhang H, Li H, Xiao D, et al. Performance analysis of spatial-diversity reception over combined effects of atmospheric turbulence[J]. Chinese Journal of Lasers, 2016, 43(4):0405002. (in Chinese)
[7] Fan C, Zuo Y, Wu Z, et al. Research on diversity reception in ultraviolet communication system[J]. Optical Communication Technology, 2013, 37(12):44-46.
[8] Elshimy M A, Hranilovic S. Spatial-diversity imaging receivers for Non-line-of-sight solar-blind UV communications[J]. Journal of Lightwave Technology, 2015, 33(11):2246-2255.
[9] Ke X, Liu M. Diversity reception technology over turbulence channels in wireless optical communication[J]. Acta Optica Sinica, 2015, 35(1):80-87.
[10] Chen D, Ke X. Research on diversity receive technology on wireless optical communication using subcarrier modulation.[J]. Journal on Communications, 2012, 33(8):128-133.
[11] Liu Y, Zhang G. Combination of spatial diversity receiving technology of wireless optical communication in weak turbulence atmosphere channel[J]. Laser Technology, 2014, 38(5):698-702.
[12] Shao J, Ke X, Chen Q. A suitable polar coding modulation scheme for atmospheric weak turbulence channel[J]. Acta Electronica Sinica, 2016, 44(8):1831-1836.
[13] Wang H, Hu H, Zhang Y, et al. Modeling and simulating of error performance for free space optical communication system through weak turbulence atmosphere[J]. Journal of System Simulation, 2011, 23(4):788-792.
[14] Chen C, Yang H, Jiang H, et al. Research progress of mitigation technologies of turbulence effects in atmospheric optical communication[J]. Acta Armamentarii, 2009, 30(6):779-791. (in Chinese)
[15] Fan C. Research on diversity technology in ultraviolet communication system[D]. Beijing:Beijing University of Posts and Telecommunications, 2014. (in Chinese)
[16] Zhao T, Wang X, Liu Y. Modulation research of helicopter landing using ultraviolet guiding technology in atmospheric turbulence[J]. Laser Technology, 2017, 41(3):411-415. (in Chinese)
[17] Ding H, Chen G, Majumdar A K, et al. Turbulence modeling for non-line-of-sight ultraviolet scattering channels[C]//Proceedings of SPIE-the International Society for Optical Engineering, 2011, 8038(1):73-81.