DocumentCode :
934216
Title :
A modified design of trellis-coded MPSK for the fading channel
Author :
Periyalwar, Shalini S. ; Fleisher, Solomon M.
Author_Institution :
Dept. of Electr. Eng., Tech. Univ. of Nova Scotia, Halifax, NS, Canada
Volume :
41
Issue :
6
fYear :
1993
fDate :
6/1/1993 12:00:00 AM
Firstpage :
874
Lastpage :
882
Abstract :
It is shown that the classical additive white Gaussian noise (AWGN) channel design can be retained for the fading channel with any degree of fading, if carried out with the appropriate signal set size M=Mmin. The size of the signal set M min is shown to depend upon the number of parallel transitions between a given pair of states and the throughput rate. In the proposed multiple trellis-coded modulation (MTCM) scheme with a modified design (MTCM (MD)), the output bits from a rate m/m+1 trellis encoder are assigned multiple signals from an Mmin-PSK signal set. Compared to the MTCM with set partitioning proposed for the fading channel (SPF) design, the MTCM (MD) scheme provides the same signal diversity and the same or increased values of the branch distance product, and always leads to increased value of d2(free). As a result, the performance is always improved on the Rician fading channel due to the increased d2(free), and is improved on any fading channel when an increase in branch distance produce P takes place. When compared to the MTCM with the set partitioning optimum for the AWGN channel (SPA) design, the MTCM (MD) scheme, under certain conditions, provides the same value of d2(free) as the MTCM (SPA) design, and is then asymptotically optimum for both the AWGN channel and the fading channels
Keywords :
fading; phase shift keying; telecommunication channels; trellis codes; AWGN channel design; MTCM; Rician fading channel; additive white Gaussian noise; branch distance product; multiple trellis-coded modulation; set partitioning; signal diversity; signal set; throughput rate; trellis encoder; trellis-coded MPSK; AWGN channels; Data communication; Fading; Modems; Modulation coding; Performance gain; Rayleigh channels; Rician channels; Signal design; Throughput;
fLanguage :
English
Journal_Title :
Communications, IEEE Transactions on
Publisher :
ieee
ISSN :
0090-6778
Type :
jour
DOI :
10.1109/26.231910
Filename :
231910
Link To Document :
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