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Information / Convolutional code / Forward error correction / Orthogonal frequency-division multiplexing / Turbo code / Concatenated error correction code / Coding theory / BCJR algorithm / Trellis modulation / Error detection and correction / Telecommunications engineering / Technology


This article has been accepted for inclusion in a future issue of this journal. Content is final as presented, with the exception of pagination. IEEE TRANSACTIONS ON BROADCASTING 1 Comparison of Convolutional and Turbo
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Document Date: 2007-06-29 06:52:43


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Porto / Wolverhampton / Tokyo / Sheffield / New York / San Diego / /

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IEEE Global Telecommunications / Broadband Radio Access Networks / Hutchison Personal Communications Ltd. / Fixed Broadband Wireless Access Systems / Alfred Peters Limited / Computer Laboratory / BROADBAND FWA SYSTEMS / Inmarsat Ltd. / A. R. Calderbank / Multiple Access Communications Ltd. / Global Telecommunications / Marconi Ltd. / Marconi Communications / IEEE Journal / /

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Japan / Portugal / United Kingdom / Chile / United States / Greece / /

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USD / /

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Facility

University of Santiago / University of Southampton / University of Newcastle-upon-Tyne / University of Porto / EPSRC College / University of Newcastle / Princeton University / University of Surrey / University of Loughborough / Computer Laboratory / University College London / University of Cambridge / Staffordshire University / Cambridge University / University of Huddersfield / Democritus University of Thrace / /

IndustryTerm

satellite communication engineering / speech processing/recognition / high data-rate wireless communication / wireless systems / digital signal processing algorithms / wireless communications / antenna systems / space-time processing block / Wireless Applications / space-time processor / bit-rate wireless applications / sub-carrier / broadband fixed wireless access / wireless access / maximum a posteriori algorithm / network communication systems / order diversity systems / inner products / turbo-coded and convolutional-coded systems / signal processing / multiprocessor systems / Communications system model / communications theory / broadband services / turbo decoding algorithms / fixed wireless access systems / /

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U.K. / /

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FWA channel / IEEE Vehicular Technology Conference-Fall / AWGN channel / /

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Cambridge University / Faculty of Engineering / Princeton University / Staffordshire University / Institution of Engineering and Technology / University of Surrey / University of Porto / US Federal Reserve / Senior University / University College London / Democritus University / IEEE and the Technical Chamber of Greece / University of Newcastle / School of EE&C Engineering / University of Santiago / EPSRC College / Department of Computer Science / University of Cambridge / Faculty of Sciences / University of Loughborough / Institution of Engineering / Portuguese Foundation for Science and Technology / University of Southampton / University of Huddersfield / /

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Miguel R. D. Rodrigues / Ian J. Wassell / Ioannis A. Chatzigeorgiou / D. Agrawal / V / A. R. Hammons / Jr / Rolando A. Carrasco / H. El Gamal / /

Position

Visiting Researcher / SYSTEM MODEL A. General / Professor / Lecturer / candidate in communication engineering / Professor of Mobile Communications / Member / /

ProgrammingLanguage

ML / /

ProvinceOrState

California / /

PublishedMedium

IEEE Communications Letters / IEEE Transactions on Communications / IEEE Transactions on Information Theory / IEEE Communications Magazine / the IEEE Wireless Communications / /

Technology

conventional Viterbi algorithm / maximum a posteriori algorithm / Viterbi algorithm / Max-Log-MAP algorithms / Viterbi decoding algorithms / broadband fixed wireless / digital signal processing algorithms / decoding algorithms / max-log-MAP algorithm / wireless access / BCJR algorithm / simplified Max-Log-MAP algorithm / space-time processor / turbo decoding algorithms / broadband / decoding algorithm / Simulation / Digital Object Identifier / log-MAP algorithm / /

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