Fuzzy control of optical PPM–CDMA with M-ary orthogonal signaling |
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Authors: | K. Cui M.S. Leeson E.L. Hines |
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Affiliation: | aSchool of Engineering, University of Warwick, Coventry CV4 7AL, United Kingdom |
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Abstract: | This paper introduces an incorporated spectral-amplitude coding (SAC) optical code-division multiple-access (OCDMA) scheme. One novel class of optical signature codes based on combinatorial designs is employed with M-ary pulse-position modulation (PPM) signaling to improve the system performance beyond the interference limit. A union upper bound on the bit error rate (BER) is derived and the performance characteristics are then discussed with a variety of system parameters. Furthermore, fuzzy logic (FL) control is proposed to provide tolerance of different degrees of reliability in multirate transmission and to achieve distinct service differentiation for multimedia applications. It is shown that the proposed system can effectively suppress noise effects and offer improved adaptation capabilities for multi-quality network requirements in comparison with systems without optimization. |
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Keywords: | Spectral-amplitude coding (SAC) Optical code-division multiple-access (OCDMA) Combinatorial designs Pulse-position modulation (PPM) Bit error rate (BER) Fuzzy logic (FL) control |
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