DocumentCode
769010
Title
Analysis of predetection diversity TCM-MPSK and postdetection diversity TCM-MDPSK systems on a Rayleigh fading channel
Author
Femenias, Guillem ; Agusti, R.
Author_Institution
Dept. de Teoria del Senyal i Comunicacions, Univ. Politecnica de Catalunya, Barcelona, Spain
Volume
43
Issue
38020
fYear
1995
Firstpage
374
Lastpage
385
Abstract
In this paper, the bit error rate (BER) performance of predetection diversity trellis coded multilevel phase shift keying (TCM-MPSK) and postdetection diversity trellis coded multilevel differential phase shift keying (TCM-MDPSK), transmitted over a Rayleigh fading channel is presented. Novel analytical upper bounds using the transfer function bounding technique are obtained and illustrated by several numerical examples. A new asymptotically tight upper bound for the maximal ratio combining (MRC) diversity schemes is also derived. In order to analyze practical TCM schemes (four or more states), only trellis codes holding uniform error property (UEP) and uniform distance property (UDP) are considered, enabling the encoder transfer function to be obtained from a modified state transition diagram, having no more states than the encoder itself. Monte-Carlo simulation results, which are more indicative of the exact system performance, are also given.<>
Keywords
Monte Carlo methods; Rayleigh channels; Viterbi decoding; differential phase shift keying; diversity reception; fading; land mobile radio; phase shift keying; transfer functions; trellis coded modulation; BER performance; Monte-Carlo simulation; Rayleigh fading channel; TCM-MDPSK; TCM-MPSK; Viterbi algorithm; bit error rate; encoder transfer function; maximal ratio combining diversity schemes; mobile radio; modified state transition diagram; multilevel differential phase shift keying; postdetection diversity; predetection diversity; system performance; transfer function bounding technique; trellis coded multilevel phase shift keying; uniform distance property; uniform error property; upper bounds; Bit error rate; Convolutional codes; Differential phase shift keying; Diversity reception; Fading; Phase shift keying; System performance; Transfer functions; Upper bound;
fLanguage
English
Journal_Title
Communications, IEEE Transactions on
Publisher
ieee
ISSN
0090-6778
Type
jour
DOI
10.1109/26.380056
Filename
380056
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