• Chinese Journal of Lasers
  • Vol. 44, Issue 10, 1006003 (2017)
Chen Yong1, Li Yichao1, and Liu Huanlin2
Author Affiliations
  • 1[in Chinese]
  • 2[in Chinese]
  • show less
    DOI: 10.3788/CJL201744.1006003 Cite this Article Set citation alerts
    Chen Yong, Li Yichao, Liu Huanlin. Moving Target Positioning Method Based on Visible Light Communication in Time Division Multiplexing Network[J]. Chinese Journal of Lasers, 2017, 44(10): 1006003 Copy Citation Text show less
    References

    [1] Song X, Li X, Tang W C et al. A hybrid positioning strategy for vehicles in a tunnel based on RFID and in-vehicle sensors[J]. Sensors, 14, 23095-23118(2014). http://europepmc.org/abstract/med/25490581

    [2] Wu Y I, Wang H, Zheng X J. WSN localization using RSS in three-dimensional space - A geometric method with closed-form solution[J]. IEEE Sensors Journal, 16, 4397-4404(2016). http://ieeexplore.ieee.org/document/7442530/

    [3] Byrnes H F, Miller B A, Morrison C N et al. Brief report: Using global positioning system (GPS) enabled cell phones to examine adolescent travel patterns and time in proximity to alcohol outlets[J]. Journal of Adolescence, 50, 65-68(2016). http://www.ncbi.nlm.nih.gov/pubmed/27214713

    [4] Leu J S, Yu M C, Tzeng H J. Improving indoor positioning precision by using received signal strength fingerprint and footprint based on weighted ambient Wi-Fi signals[J]. Computer Networks, 91, 329-340(2015). http://www.sciencedirect.com/science/article/pii/S1389128615002923

    [5] Gioia C, Borio D. Stand-alone and hybrid positioning using asynchronous pseudolites[J]. Sensors, 15, 166-193(2014). http://pubmedcentralcanada.ca/pmcc/articles/PMC4327013/

    [6] Lee K, Park H, Barry J R. Indoor channel characteristics for visible light communications[J]. IEEE Communications Letters, 15, 217-219(2011). http://ieeexplore.ieee.org/document/5682214/

    [7] Chen Yong, Yin Hui, Liu Huanlin. Adaptive channel estimation for MIMO-OFDM visible light communication system[J]. Chinese J Lasers, 43, 0906003(2016).

    [8] Kim J Y, Kim J S, Kang G T et al. An indoor positioning system for mobile robots using visible light communication and fuzzy logic[J]. Journal of Institute of Control, Robotics and Systems, 22, 75-82(2016). http://www.researchgate.net/publication/297764888_An_indoor_positioning_system_for_mobile_robots_using_visible_light_communication_and_fuzzy_logic

    [9] Xu W, Wang J, Shen H et al. Indoor positioning for multiphotodiode device using visible-light communications[J]. IEEE Photonics Journal, 8, 1-11(2016). http://ieeexplore.ieee.org/document/7368080/

    [10] Kim J S, Park H, Lee W C. Indoor positioning system based on augmented reality using pedestrian dead reckoning and visible light communication[J]. Journal of Korean Institute of Information Technology, 14, 189-194(2016). http://www.researchgate.net/publication/295088334_Indoor_Positioning_System_Based_on_Augmented_Reality_Using_Pedestrian_Dead_Reckoning_and_Visible_Light_Communication

    [11] Liu Y, Hsu C W, Chen H Y et al. Visible-light communication multiple-input multiple-output technology for indoor lighting, communication, and positioning[J]. Optical Engineering, 54, 120502(2015). http://proceedings.spiedigitallibrary.org/article.aspx?articleid=2479452&resultClick=1

    [12] Wei L, Zhang H M, Yu B Y et al. High-accuracy indoor positioning system based on visible light communication[J]. Optical Engineering, 54, 110501(2015). http://proceedings.spiedigitallibrary.org/article.aspx?articleid=2469037&resultClick=1

    [13] Kim H S, Kim D R, Yang S H et al. An indoor visible light communication positioning system using a RF carrier allocation technique[J]. Journal of Lightwave Technology, 31, 134-144(2013). http://www.opticsinfobase.org/jlt/abstract.cfm?uri=jlt-31-1-134

    [14] Zhang W Z. Chowdhury M I S, Kavehrad M. A synchronous indoor positioning system based on visible light communications[J]. Optical Engineering, 53, 045105(2014).

    [15] Lee D, Choi K, Kim K D et al. Visible light wireless communications based on predistorted OFDM[J]. Optics Communications, 285, 1767-1770(2012). http://www.sciencedirect.com/science/article/pii/S0030401811014313

    [16] Lim J. Ubiquitous 3D positioning systems by led-based visible light communications[J]. IEEE Wireless Communications, 22, 80-85(2015). http://ieeexplore.ieee.org/xpls/icp.jsp?arnumber=7096289

    [17] Gu W J, Aminikashani M, Deng P D et al. Impact of multipath reflections on the performance of indoor visible light positioning systems[J]. Journal of Lightwave Technology, 34, 2578-2587(2016). http://ieeexplore.ieee.org/document/7431937/

    [18] Zhao X, Lin J M. Maximum likelihood estimation of vehicle position for outdoor image sensor-based visible light positioning system[J]. Optical Engineering, 55, 043104(2016). http://adsabs.harvard.edu/abs/2016OptEn..55d3104Z

    [19] Hou Y N, Xiao S L, Zheng H F et al. Multiple access scheme based on block encoding time division multiplexing in an indoor positioning system using visible light[J]. Journal of Optical Communications and Networking, 7, 489-495(2015). http://ieeexplore.ieee.org/document/7107881/

    [20] Li H, Luo Z, Zhang N et al. Integrated design of cellular composites using a level-set topology optimization method[J]. Computer Methods in Applied Mechanics and Engineering, 309, 453-475(2016). http://www.sciencedirect.com/science/article/pii/S0045782516305710

    [21] Nadeem U, Hassan N U, Pasha M A et al. Indoor positioning system designs using visible LED lights: Performance comparison of TDM and FDM protocols[J]. Electronics Letters, 51, 72-74(2015). http://ieeexplore.ieee.org/xpls/abs_all.jsp?arnumber=7006845

    [22] Li Jibo, Liu Xiguo, Wang Hongxing et al. Improved ultraviolet communication time division multiplexing network method[J]. Chinese J Lasers, 41, 1105003(2014).

    CLP Journals

    [1] Chen Yong, Shen Qixiang, Liu Huanlin. Optimization Algorithm of Receiver Optical Power Uniformity in Indoor Visible Light Communication[J]. Chinese Journal of Lasers, 2018, 45(5): 506003

    Chen Yong, Li Yichao, Liu Huanlin. Moving Target Positioning Method Based on Visible Light Communication in Time Division Multiplexing Network[J]. Chinese Journal of Lasers, 2017, 44(10): 1006003
    Download Citation