• Acta Optica Sinica
  • Vol. 29, Issue 2, 323 (2009)
Zhang Jing*, Qiu Kun, Li Yonggang, Zhou Yu, and Zhang Hongbo
Author Affiliations
  • [in Chinese]
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    Zhang Jing, Qiu Kun, Li Yonggang, Zhou Yu, Zhang Hongbo. Adaptively Modulated Optical Orthogonal Frequency Division Multiplexing System with Variable Guard Interval[J]. Acta Optica Sinica, 2009, 29(2): 323 Copy Citation Text show less
    References

    [1] Wang Wenbo, Zheng Kan. Broad Band Wireless Communication OFDM Technology[M]. Beijing:Posts & Telecom Press,2003,12~17

    [2] N. E. Jolley, H. Kee, R. Rickard et al.. Generation and propagation of a 1550 nm 10 Gbit/s optical orthogonal frequency division multiplexed signal over 1000m of multimode fibre using a directly modulated DFB. Optical Fibre Communication Conf./National Fibre Optic Engineers Conf.(OFC/NFOEC),Anaheim,CA, 2005,Paper OFP3

    [3] J. M. Tang, P. M. Lane, K. A. Shore. Transmission performance of adaptively modulated optical OFDM signals in multimode fibre links[J].IEEE Photon. Technol. Lett., 2006,18(1):205~207

    [4] Li Yan, Xu Tianhua, Jia Dagong et al.. Dynamic dispersion compensation in a 40 Gb/s single-channeled optical fiber communication system[J]. Acta Optica Sinica, 2007, 27(7): 1161~1165

    [5] Lifeng Lai,Zhaoyang Zhang,Guanding Yu et al.. An adaptive OFDM system with variable guard interval[J].Proc. SPIE,2004,5284:243~252

    [6] Li Zhaoxi,Hu Guijun,Kong Lingjie. Performance analysis of a multimode fiber communication system based on the adaptive modulation orthogonal frequency division multiplexing[J]. Chinese J. Lasers,2008, 35(4):582~586

    [7] J.M.Tang, P.M.Lane, K.A.Shore. High speed transmission of adaptively modulated optical OFDM signals over multimode fibers using directly modulated DFBs[J]. J. Lightw. Technol., 2006, 24(1):429~441

    [8] J. M. Tang, K. A. Shore. 30Gb/s signal transmission over 40 km directly modulated DFB-laser-based single-mode-fiber links without optical amplification and dispersion compensation[J].J. Lightw. Technol., 2006,24(6): 2318~2327

    [9] X. Q. Jin, J. M. Tang, P. S. Spencer et al.. Optimization of adaptively modulated optical OFDM modems for multimode fiber-based local area networks[J]. Journal of Optical Networking, 2008,7(3):198~214

    [10] J. L. Seoane, S. K. Wilson, S. Gelfand. Analysis of intertone and interblock interference in OFDM when the length of the cyclic prefix is shorter than the length of the impulse response of the channel[J].IEEE Comm.,1997,1(1):32~36

    [11] J. E. A. Whiteaway, G. H. B. Thompson, A. J. Collar et al..The design and assessment of λ/4 phase-shifted DFB laser structures[J].IEEE J. Quant. Electron., 1989,25(6):1261~1279

    [12] P. Pepeljugoski, S. E. Golowich, A. J. Ritger et al..Modelling and simulation of next-generation multimode fiber links[J].J. Lightwave. Technol., 2003, 21(5): 1242~1255

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    Zhang Jing, Qiu Kun, Li Yonggang, Zhou Yu, Zhang Hongbo. Adaptively Modulated Optical Orthogonal Frequency Division Multiplexing System with Variable Guard Interval[J]. Acta Optica Sinica, 2009, 29(2): 323
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