• Acta Optica Sinica
  • Vol. 35, Issue 3, 306002 (2015)
Deng Lijun* and Fan Yangyu
Author Affiliations
  • [in Chinese]
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    DOI: 10.3788/aos201535.0306002 Cite this Article Set citation alerts
    Deng Lijun, Fan Yangyu. Channel Characterization Parameters of the Non-Empty Indoor Visible Light Communication Based on the Three-Dimension Ray Tracing and Finite State Markov Chain[J]. Acta Optica Sinica, 2015, 35(3): 306002 Copy Citation Text show less
    References

    [1] Li Rongling, Shang Huiliang, Lei Yu, et al.. Research of key enabling technologied for high-speed visible-light communiation [J]. Laser & Optoelectronics Progress, 2013, 50(5): 050003.

    [2] Fu Hongshuang, Zhu Yijun. Analysis of the correlation of optical multiple-input multiple-output channel using white LED lighting in indoor line of sight environments [J]. Acta Optica Sinica, 2013, 33(9): 0906002.

    [3] F R Gfeller, U H Bapst. Wireless in-house data communication via diffuse infrared radiation [J]. Proc IEEE , 1979, 67(11): 1474–1486.

    [4] J R Barry. Wireless Infrared Communications [M]. Holland: Kluwer Academic, 2002.

    [5] J M Kahn, W J Krause, J B Carruthers. Experimental characterization of non-directed indoor infrared channels [J]. IEEE Trans Commun, 1995, 43(234): 1613-1623.

    [6] Do Tronghop, Junho Hwang, Souhwan Jung, et al.. Modeling and analysis of the wireless channel formed by LED angle in visible light communication [C]. International Conference on Information Networking, 2012. 354-357.

    [7] Kwonhyung Lee, Hyuncheol Park. Channel model and modulation schemes for visible light communications [C]. IEEE 54th International Midwest Symposium on Circuits and Systems, 2011. 1-4.

    [8] Talha A Khan, Muhammad Tahir, Ahmad Usman. Visible light communication using wavelength division multiplexing for smart spaces [C]. Consumer Communications and Networking Conference, 2012. 230-234.

    [9] Xie Zhang, Kaiyun Cui, Minyu Yao, et al.. Experimental characterization of indoor visible light communication channels [C]. International Communication System, Network and Digital Signal Processing, 2012. 1-5.

    [10] Kwonhyung Lee, John R Barry. Indoor Channel Characteristics for Visible Light Communications [J]. IEEE Communications Letters, 2011, 15(2): 217-219.

    [11] Fang Li, Xinwan Li, Weiwen Zou, et al.. Simplified calculation method of indoor optical impulse response based on recursive algorithm [C]. International Conference on Communication in China Workshops, 2012. 49-53.

    [12] Zhou Zhou, Chunyi Chen, Mohsen Kavehrad. Impact analyses of high- order light reflections on indoor optical wireless channel model and calibration [J]. J Lightwave Technol, 2014, 32(10): 2003-2011.

    [13] Ying Yi, Changping Li, Kyesan Lee. Optimum spread code applied in indoor visible light data transmission for optical multipath dispersion reduction [J]. IETE Technical Review, 2013, 30(3): 233-239.

    [14] R J C Bultitude, P Melancon, H Zaghloul, et al.. The dependence of indoor radio channel multipath characteristics on transmitt/receiver ranges [J]. IEEE J Sel Areas Commun, 1993. 979-990.

    [15] H Takai. In-room transmission BER performance of anti-multipath modulation PSK-VP [J]. IEEE Trans Veh Technol, 1993, 42(2): 177-185.

    [16] A Gheorghiu, V Dragomir. Geometry of Structural Forms [M]. London: Elsevier Applied Science, 1978.

    [17] V Bhaskar. Finite-state Markov model for lognormal, chi-square (central), chi-square (non-central), and K-distributions [J]. Int J Wireless Inf Networks, 2007, 14(4): 237-250.

    [18] X Zhu, J M Kahn. Markov chain model in maximum-likelihood sequence detection for free-space optical communication through atmospheric turbulence channels [J]. IEEE Trans Commun, 2003, 51(3): 509-516.

    CLP Journals

    [1] Jia Kejun, Hao Li, Yu Caihong. cnModeling of Multipath Channel and Performance Analysis of MIMO-ACO-OFDM System for Indoor Visible Light Communications[J]. Acta Optica Sinica, 2016, 36(7): 706005

    Deng Lijun, Fan Yangyu. Channel Characterization Parameters of the Non-Empty Indoor Visible Light Communication Based on the Three-Dimension Ray Tracing and Finite State Markov Chain[J]. Acta Optica Sinica, 2015, 35(3): 306002
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