Chinese Journal of Lasers, Volume. 35, Issue 6, 879(2008)
Novel Frequency-Hop Optical Code Division Multiple Access Based on Quadratic Congruence-Hop Codes
[1] [1] A. J. Mendez, R. M. Gagliardi, H. X. C. Feng et al.. Strategies for realizing optical CDMA for dense, high-speed, long span, optical network applications[J]. J. Lightwave Technol., 2000, 18(12):1685~1696
[3] [3] Chao-Chin Yang. Optical CDMA passive optical network using prime code with interference elimination[J]. IEEE Photon. Technol. Lett., 2007, 19(7):516~518
[4] [4] H. Fathallah, L. A. Rusch, S. LaRochelle. Passive optical fast frequency-hop CDMA communications system[J]. J. Lightwave Technol., 1999, 17(3):397~405
[5] [5] L. Bin. One-coincidence sequences with specified distance between adjacent symbols for frequency-hopping multiple access[J]. IEEE Trans. Commun., 1997, 45(4):408~410
[6] [6] M. Srinivasan, G. Geetha, M. Meenakshi. Comparison of prime code, extended prime code and quadratic congruence code using a normalized throughput metric[C]. Proc. 6th International Conference on Transparent Optical Networks, 2004, 2:168~171
[7] [7] Z. Kostic, E. L. Titlebaum. The design and performance analysis for several new classes of codes for optical synchronous CDMA and for arbitrary-medium time-hopping synchronous CDMA communication systems[J]. IEEE Trans. Commun., 1994, 42(8):2608~2617
[8] [8] K. Wakafuji, T. Ohtsuki. Performance analysis of multibits/sequence-period optical CDMA receiver with double optical hardlimiters[C]. Proc. GLOBECOM, 2004, 2:1030~1034
[11] [11] S.-S. Miu, Y.-H. Won. Upper-bounds on bit error rate of OCDMA systems using the time spreading /wavelength hoping codes[C]. Proc. IEEE Lasers and Electro-Optics Society 2000 Annual Meeting. 13th Annual Meeting, 2000, 2:814~815
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Ding Meiling, Chen Kangsheng. Novel Frequency-Hop Optical Code Division Multiple Access Based on Quadratic Congruence-Hop Codes[J]. Chinese Journal of Lasers, 2008, 35(6): 879