DocumentCode
1254974
Title
Impact of diversity reception on fading channels with coded modulation. I. Coherent detection
Author
Ventura-Traveset, Javier ; Caire, Giuseppe ; Biglieri, Ezio ; Taricco, Giorgio
Author_Institution
Eur. Space Res. & Technol. Centre, Noordwijk, Netherlands
Volume
45
Issue
5
fYear
1997
fDate
5/1/1997 12:00:00 AM
Firstpage
563
Lastpage
572
Abstract
We address the problem of designing and analyzing the performance of a coded modulation scheme for the fading channel when space diversity is used. Under fairly general conditions, a channel affected by fading can be turned into an additive white Gaussian noise (AWGN) channel by increasing the number of diversity branches. Consequently, it can be expected (and is indeed verified by our analyses and simulations) that a coded modulation scheme designed to be optimal for the AWGN channel also will perform asymptotically well on a fading channel with diversity. This paper presents bounds on the bit-error probability of a system with coded modulation and diversity for space- and time-correlated Rician flat fading. Specifically, we derive a new method which allows evaluation of the pairwise error probability extremely easily, as well as accurately and computationally fast. The accuracy achieved improves considerably on the widely used, but rather loose Chernoff bound. Starting from this analysis, we study the asymptotic behavior of the fading channel with diversity as the number of diversity branches increases, and we address the effects of diversity on coded modulation performance and design criteria, including the effect on interleaver depth (which affects the total delay of the system)
Keywords
Gaussian channels; Rician channels; coding errors; correlation methods; delays; diversity reception; error statistics; fading; interleaved codes; modulation coding; probability; signal detection; AWGN channel; Chernoff bound; additive white Gaussian noise; asymptotic behavior; bit error probability; coded modulation; coherent detection; diversity reception; fading channels; interleaver depth; pairwise error probability; radio channels; simulations; space-correlated Rician flat fading; system delay; time-correlated Rician flat fading; AWGN channels; Additive white noise; Analytical models; Delay systems; Diversity reception; Fading; Modulation coding; Pairwise error probability; Performance analysis; Rician channels;
fLanguage
English
Journal_Title
Communications, IEEE Transactions on
Publisher
ieee
ISSN
0090-6778
Type
jour
DOI
10.1109/26.592556
Filename
592556
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