DocumentCode
86619
Title
Efficient Decoding Algorithms for the Compute-and-Forward Strategy
Author
Mejri, Asma ; Rekaya-Ben Othman, Ghaya
Author_Institution
Dept. of Commun. & Electron., Telecom-ParisTech, Paris, France
Volume
63
Issue
7
fYear
2015
fDate
Jul-15
Firstpage
2475
Lastpage
2485
Abstract
We address in this paper decoding aspects of the Compute-and-Forward (CF) physical-layer network coding strategy. Under the CF framework, encoders use a special class of nested lattice codes and decoders are based on suboptimal minimum distance decoding of unknown performance gap with respect to optimal decoders. In this work, we develop and assess the performance of novel decoding algorithms for CF operating in the multiple access channel. Starting with the Gaussian channel, we investigate the maximum a posteriori (MAP) decoder. We derive a novel MAP decoding metric and develop practical decoding algorithms shown numerically to outperform the original one. For the fading channel, we analyze the ML decoder for integer-valued lattices and develop a novel Diophantine approximation-based near-ML decoding algorithm shown numerically to outperform the original CF decoder in the 1-D case using Z lattices.
Keywords
Gaussian channels; approximation theory; fading channels; maximum likelihood decoding; multi-access systems; network coding; CF physical-layer network coding strategy; Diophantine approximation-based near-ML decoding algorithm; Gaussian channel; MAP decoding metric; Z lattice; compute-and-forward strategy; fading channel; integer-valued lattice; maximum a posteriori decoder; multiple access channel; nested lattice code; suboptimal minimum distance decoding; Encoding; Gaussian distribution; Lattices; Maximum likelihood decoding; Measurement; Receivers; Compute-and-Forward; Lattice decoding; Physical-Layer Network Coding; Physical-layer network coding; compute-and-forward; lattice decoding; maximum a posteriori decoding;
fLanguage
English
Journal_Title
Communications, IEEE Transactions on
Publisher
ieee
ISSN
0090-6778
Type
jour
DOI
10.1109/TCOMM.2015.2440361
Filename
7116535
Link To Document