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Volume 39 Issue 4
May  2015
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Design and performance study on novel optical orthogonal codes in OCDMA systems

  • Corresponding author: LI Chuanqi, lcq@mailbox.gxnu.edu.cn
  • Received Date: 2014-06-18
    Accepted Date: 2014-08-18
  • In order to get the optical orthogonal codes (OOC) with good performance, all-interval-set with no duplicate number was used. After design and system simulation, OOC had ideal correlation and flexible code capacity. The formula of bit error rate (BER) was derived considering all kinds of noise and multi-user interference. Asynchronous optical code division multiple access (OCDMA) system was designed and constructed with fiber optic delay lines as encoders and decoders. The result shows that the OOC can adapt to the demands of more number of users. The consequence is satisfactory both from the calculation of BER formula and from system simulation. The research is helpful for further development of OCDMA systems with high capacity.
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  • [1]

    LI Ch Q, LI X B. OCDMA system in optical communication[M].Beijing:Science Press, 2008:87(in Chinese).
    [2]

    WANG X M, CHANG Y X, FENG T. Optimal 2-D(nm,3,2,1)-optical orthogonal codes[J].Information Theory, 2013, 59(1):710-725.
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    OMRANI R, GARG G, KUMAR P V, et al. Large families of asymptotically optimal two-dimensional optical orthogonal codes[J]. IEEE Transactions on Information Theory, 2012, 58(2):1163-1185.
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    HAMZEH B, NEZAMALHOSSEINI S A, SALEHI J A. Performance analysis of equal-energy two-level OCDMA system using generalized optical orthogonal codes[J]. Journal of Lightwave Technology, 2013, 31(10):1573-1584.
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    ANAMAN J O, PRINCE S. Correlation properties and performance evaluation of 1-Dimensional OOC's for OCDMA[C]//2012 International Conference on Devices, Circuits and Systems (ICDCS). New York, USA:IEEE,2012:167-171.
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    CHAUHAN R C S, KUMAR R, SHUKLA M, et al. Proposal for one dimensional optical orthogonal codes: design, analysis algorithm[C]//2011 International Conference on Communication Systems and Network Technologies (CSNT). New York, USA:IEEE,2011:514-519.
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    LI X B, PENG J, HUANG H B. Discussion on method of construction of big capacity OCDMA address code: Construction of (F, K, 1, 2) optical orthogonal codes from block design[C]//2010 3rd International Congress on Image and Signal Processing (CISP). New York, USA:IEEE, 2010: 3272-3275.
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    HAITAO C, RUIZHONG W. Combinatorial constructions for optimal two-dimensional optical orthogonal codes[J]. IEEE Transactions on Information Theory,2009,55(3):1387-1394.
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    SUN S, HONGXI Y, WANG Z Y, et al. A new family of 2-D optical orthogonal codes and analysis of its performance in optical CDMA access networks[J]. Journal of Lightwave Technology, 2006,24(4):1646-1653.
    [10]

    LI Ch Q, LI X B. OCDMA system in optical communication[M]. Beijing:Science Press, 2008:214(in Chinese).
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    GAO X D, WEI Ch. Manufacture of interference edge filter film on the end of fiber for optical communication[J]. Laser Technology, 2013, 37(3):314-316 (in Chinese).
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    Al-KHAFAJI H M R, ALJUNID S A, FADHIL H A. Performance enhancement of SAC-OCDMA system using modified-AND subtraction detection[C]//2011 IEEE International Conference on Computer Applications and Industrial Electronics (ICCAIE).New York, USA:IEEE,2011: 412-415.
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    YEN Ch T, CHEN W B. An optical CDMA method for in-vehicle information service[C]//2012 12th International Conference on ITS Telecommunications (ITST).New York, USA:IEEE,2012:347-351.
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    KARIMI M, NASIRI-KENARI M. An internally coded TH/OCDMA scheme for fiber optic communication systems and its performance analysis-part Ⅱ:using frame time hopping code[J]. IEEE Transactions on Communications,2009,57(1):50-55.
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Design and performance study on novel optical orthogonal codes in OCDMA systems

    Corresponding author: LI Chuanqi, lcq@mailbox.gxnu.edu.cn
  • 1. Electronic Engineering College, Guangxi Normal University, Guilin 541004, China

Abstract: In order to get the optical orthogonal codes (OOC) with good performance, all-interval-set with no duplicate number was used. After design and system simulation, OOC had ideal correlation and flexible code capacity. The formula of bit error rate (BER) was derived considering all kinds of noise and multi-user interference. Asynchronous optical code division multiple access (OCDMA) system was designed and constructed with fiber optic delay lines as encoders and decoders. The result shows that the OOC can adapt to the demands of more number of users. The consequence is satisfactory both from the calculation of BER formula and from system simulation. The research is helpful for further development of OCDMA systems with high capacity.

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