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Title
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Up-Link : Coded Cognitive MIMO MC-IDMA System for Frequency-Selective Channel
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Author
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Asharani Patil1¢Ó, G.S.Biradar2¢Ó and K.S.Vishvaksenan3¢Ó¢Ó
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Citation |
Vol. 19 No. 8 pp. 70-77
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Abstract
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The performance outcomes of Cognitive-coded MIMO Multi-carrier-IDMA system for uplink transmission. Cognitive Radio Network is a device for frequency-sensitive in wireless technology by which we can exploit available ideal spectrum, disperse the radio spectrum vigorously for mobile network. In IDMA, interleaving pattern is defined as user-specific and low-spreading code is exploited. We implement iterative decoding algorithm at base station to diminish the adverse issues of Primary users interference (P-MUI) and secondary multi-user interferences(S-MUI) thereby enhancing error-rate performance with lower value of SNR ratio. In our work, We split the spectrum carefully and we allocate the sub-band spectrum frequency for various users to enhance the bandwidth. We exploit V-BLAST architecture to achieve higher data rate. We build random-interleaver based user-specific pattern. Further we study and present the simulation results of cognitive MC-IDMA systems for frequency-selective channel with ZF-OSIC and MMSE-OSIC detection algorithm. Our simulation results reveal that coded-Cognitive MIMOMC-IDMA system provides robust error-rate performance while offering better data rate in the presence of multi-user interference for uplink communication. Subsequently we explored that Cognitive MC-IDMA system effectively accomplishes the solution to higher bandwidth.
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Keywords
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Channel encoder, Interleave division multiple accesses (IDMA), Minimum-MSE, Zero forcing (ZF).
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URL
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http://paper.ijcsns.org/07_book/201908/20190811.pdf
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