• Acta Optica Sinica
  • Vol. 40, Issue 4, 406001 (2020)
Song Peng, Liu Chun*, Zhu Lei, Zhang Lijian, and Zhang Xiaodan
Author Affiliations
  • School of Electronics and Information, Xi''an Polytechnic University, Xi''an, Shaanxi 710048, China
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    DOI: 10.3788/AOS202040.0406001 Cite this Article Set citation alerts
    Song Peng, Liu Chun, Zhu Lei, Zhang Lijian, Zhang Xiaodan. Analysis of Single-Scatter Path Loss in Wireless Ultraviolet Communication in Mobile Scene[J]. Acta Optica Sinica, 2020, 40(4): 406001 Copy Citation Text show less
    References

    [1] Wang H Q, Wang Y G, Cao M H et al. Influence of atmospheric visibility on laser pulse delay and broadening in sand and dust weather[J]. Acta Optica Sinica, 35, 0701002(2015).

    [2] Zhao F, Zhang X, Zhao J J et al. 3D ship deformations measurement method based on free-space optical communication[J]. Chinese Journal of Lasers, 45, 0404003(2018).

    [3] Yuan R Z, Ma J S. Review of ultraviolet non-line-of-sight communication[J]. China Communications, 13, 63-75(2016).

    [4] Drost R J, Sadler B M. Survey of ultraviolet non-line-of-sight communications[J]. Semiconductor Science and Technology, 29, 084006(2014).

    [5] Ke X Z[M]. Ultraviolet ad hoc network theory, 1-25(2011).

    [6] Reilly D M, Warde C. Temporal characteristics of single-scatter radiation[J]. Journal of the Optical Society of America, 69, 464-470(1979).

    [7] Luettgen M R, Shapiro J H, Reilly D M. Non-line-of-sight single-scatter propagation model[J]. Journal of the Optical Society of America A, 8, 1964-1972(1991).

    [8] Wang L J, Xu Z Y, Sadler B M. An approximate closed-form link loss model for non-line-of-sight ultraviolet communication in noncoplanar geometry[J]. Optics Letters, 36, 1224-1226(2011).

    [9] Zuo Y, Xiao H F, Wu J et al. A single-scatter path loss model for non-line-of-sight ultraviolet channels[J]. Optics Express, 20, 10359-10369(2012).

    [10] Tang Y N, Xie X P, Zhao W. Simulation research of short range non-line-of-sight ultraviolet communication performance. [C]∥2012 2nd International Conference on Consumer Electronics, Communications and Networks (CECNet), April 21-23, 2012, Yichang, China. New York: IEEE, 567-570(2012).

    [11] Zhao T F, Ke X Z. Monte Carlo simulations for non-line-of-sight ultraviolet scattering coverage area[J]. Acta Physica Sinica, 61, 114208(2012).

    [12] Zhang H L, Yin H W, Jia H H et al. The characterization of non-line-of-sight ultraviolet communication in non-common-scattering volume[J]. Optics Communications, 285, 1771-1776(2012).

    [13] Zhang H L. Study on the characteristics of propagation of ultraviolet communication system[D]. Changsha: National University of Defense Technology, 28-70(2012).

    [14] Zuo Y, Xiao H F, Wu J et al. Closed-form path loss model of non-line-of-sight ultraviolet single-scatter propagation[J]. Optics Letters, 38, 2116-2118(2013).

    [15] Xu C M, Zhang H M. Monte-Carlo based modeling for ultraviolet non-line-of-sight communication channels with typical obstacles. [C]∥2015 International Conference on Wireless Communications & Signal Processing (WCSP), October 15-17, 2015, Nanjing, China. New York: IEEE, 15636571(2015).

    [16] Xu C M, Zhang H M, Cheng J L. Effects of haze particles and fog droplets on NLOS ultraviolet communication channels[J]. Optics Express, 23, 23259-23269(2015).

    [17] Wang P, Zhang H M, Xu Z Y. Simplified model and experimental validation for ultraviolet single-scattering channels[J]. Chinese Optics Letters, 13, 080603(2015). http://www.opticsjournal.net/Articles/Abstract?aid=OJ150729000095FcIeLh

    [18] Liao L C, Drost R J, Li Z N et al. Long-distance non-line-of-sight ultraviolet communication channel analysis: experimentation and modelling[J]. IET Optoelectronics, 9, 223-231(2015).

    [19] Raptis N, Pikasis E, Syvridis D. Power losses in diffuse ultraviolet optical communications channels[J]. Optics Letters, 41, 4421-4424(2016).

    [20] Hu W X, Zhang M, Han D H et al. Research on channel-related polar code with an optimum code length for wireless ultraviolet communications[J]. Optics Express, 25, 28630-28642(2017).

    [21] Song P, Wan J F, Chen C et al. Effects of fog and haze on ultraviolet communication[J]. Acta Photonica Sinica, 47, 0506004(2018).

    [22] Zhao T F, Leng Y X, Zhao S T et al. Research on ultraviolet scattering characteristics of haze particles[J]. Spectroscopy and Spectral Analysis, 38, 837-843(2018).

    [23] Wu T F, Ma J S, Su P et al. Modeling of short-range ultraviolet communication channel based on spherical coordinate system[J]. IEEE Communications Letters, 23, 242-245(2019).

    [24] Zhao T F, Leng Y X, Yang L Y et al. Characteristics of ultraviolet light scattering by soot cluster particles[J]. Laser & Optoelectronics Progress, 56, 050103(2019).

    [25] He H, Ke K Z, Zhao T F. Research of ultraviolet non-line-of-sight single scattering link model[J]. Acta Optica Sinica, 30, 3148-3152(2010).

    [26] Song P, Zhou X L, Song F et al. Riemann sum method for non-line-of-sight ultraviolet communication in noncoplanar geometry[J]. Optics Communications, 405, 400-405(2017).

    [27] Song P, Liu C, Zhao T F et al. Research on pulse response characteristics of wireless ultraviolet communication in mobile scene[J]. Optics Express, 27, 10670-10683(2019).

    [28] Song P, Ke X Z, Xiong Y Y et al. Pulse broadening effect of non-line-of-sight ultraviolet in noncoplanar communication system[J]. Acta Optica Sinica, 36, 1106004(2016).

    Song Peng, Liu Chun, Zhu Lei, Zhang Lijian, Zhang Xiaodan. Analysis of Single-Scatter Path Loss in Wireless Ultraviolet Communication in Mobile Scene[J]. Acta Optica Sinica, 2020, 40(4): 406001
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