Abstract

The authors present coded 8-phase-shift-keyed (8-PSK) modulations for the Rayleigh fading channel. The schemes are based on multilevel trellis-coded-modulation constructions and utilize maximum free Hamming distance binary convolutional codes as building blocks. A suboptimal multistage decoder that utilizes interstage interleaving and iterative decoding is proposed and evaluated. Examples are constructed to show that the proposed schemes outperform the best modified codes of the Ungerboeck type due to significantly higher implicit time diversity, yielding seven branches of built-in time diversity, whereas the Ungerboeck code yields four branches of time diversity for a 64-state system. The transmission delay is higher, however. The new schemes can provide three levels of unequal error protection when 8-PSK or 8-differential-phase-shift-keying (8-DPSK) modulations are used. They provide 10-14-dB channel signal-to-noise ratio gain over uncoded 4-DPSK at a bit error rate of 10/sup -3/ for a modest decoding complexity.< <ETX xmlns:mml="http://www.w3.org/1998/Math/MathML" xmlns:xlink="http://www.w3.org/1999/xlink">&gt;</ETX>

Keywords

Phase-shift keyingAlgorithmTrellis modulationRayleigh fadingInterleavingDecoding methodsTrellis (graph)Convolutional codeFadingComputer scienceBit error rateTime diversityDiversity combiningChannel (broadcasting)MathematicsElectronic engineeringTelecommunicationsEngineering

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Publication Info

Year
1993
Type
article
Volume
41
Issue
9
Pages
1300-1310
Citations
83
Access
Closed

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N. Seshadri, C.-E.W. Sundberg (1993). Multilevel trellis coded modulations for the Rayleigh fading channel. IEEE Transactions on Communications , 41 (9) , 1300-1310. https://doi.org/10.1109/26.237848

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DOI
10.1109/26.237848