DocumentCode
967549
Title
Design of Multilayer Coded Modulation for Nonergodic Block-Fading Channels
Author
Lu, Bao-Liang ; Wang, Xiaodong
Author_Institution
Silicon Labs., Broomfield, CO
Volume
55
Issue
1
fYear
2007
Firstpage
205
Lastpage
215
Abstract
Multilayer coded modulation (MLyC) in single-antenna and multiple-antenna wireless fading channels is investigated. While the MLyC has been known to achieve ergodic fading channel capacity, the problem of interest here is to design practical and efficient MLyC for nonergodic block-fading channels. We develop a design methodology which maximizes the information rate of MLyC, subject to an upper bound on the decoding error probability. Moreover, we show that the MLyC performs closer to channel capacity when the overall diversity order of the channel is higher and proper spatial interleaving is employed. The relationship between the MLyC scheme and other transmission techniques, such as multilevel coded modulation and bit-interleaved coded modulation (BICM), is also discussed. It is shown through simulation examples that in realistic block-fading channels, the MLyC with practical coded modulation outperforms the BICM without turbo receiver iteration. We propose the MLyC as a promising alternative to BICM, especially when turbo iterative processing is not desired, e.g., for progressive layered media transmission
Keywords
MIMO communication; channel capacity; decoding; error statistics; fading channels; interleaved codes; modulation coding; bit-interleaved coded modulation; channel capacity; channel diversity order; decoding error probability; multilayer coded modulation; multiple-antenna wireless fading channels; nonergodic block-fading channels; progressive layered media transmission; single-antenna wireless fading channels; spatial interleaving; Channel capacity; Decoding; Design methodology; Error probability; Fading; Information rates; Interleaved codes; Modulation coding; Nonhomogeneous media; Upper bound; Bit-interleaved coded modulation (BICM); block fading; diversity; linear minimum mean-square error (LMMSE); low-density parity-check (LDPC) code; multilayer coded modulation (MLyC); nonergodic multiple-input multiple-output (MIMO); successive decoding;
fLanguage
English
Journal_Title
Communications, IEEE Transactions on
Publisher
ieee
ISSN
0090-6778
Type
jour
DOI
10.1109/TCOMM.2006.887506
Filename
4063512
Link To Document