DocumentCode
1525926
Title
Distance Spectrum and Performance of Channel-Coded Physical-Layer Network Coding for Binary-Input Gaussian Two-Way Relay Channels
Author
Yang, Tao ; Land, Ingmar ; Huang, Tao ; Yuan, Jinhong ; Chen, Zhuo
Author_Institution
Wireless & Networking Technol. Lab. (WNTL), Commonwealth Sci. & Ind. Res. Organ. (CSIRO), Sydney, NSW, Australia
Volume
60
Issue
6
fYear
2012
fDate
6/1/2012 12:00:00 AM
Firstpage
1499
Lastpage
1510
Abstract
We investigate a channel-coded physical-layer network coding (CPNC) scheme for binary-input Gaussian two-way relay channels. In this scheme, the codewords of the two users are transmitted simultaneously. The relay computes and forwards a network-coded (NC) codeword without complete decoding of the two users´ individual messages. We propose a new punctured codebook method to explicitly find the distance spectrum of the CPNC scheme. Based on that, we derive an asymptotically tight performance bound for the error probability. Our analysis shows that, compared to the single-user scenario, the CPNC scheme exhibits the same minimum Euclidean distance but an increased multiplicity of error events with minimum distance. At a high SNR, this leads to an SNR penalty of at most ln2 (in linear scale), for long channel codes of various rates. Our analytical results match well with the simulated performance.
Keywords
Gaussian channels; channel coding; error statistics; network coding; CPNC scheme; Euclidean distance; SNR; binary-input Gaussian two-way relay channel; channel-coded physical-layer network coding; distance spectrum; error probability; punctured codebook method; Australia; Downlink; Maximum likelihood decoding; Network coding; Relays; Signal to noise ratio; Silicon; Channel coding; compute-and-forward; distance spectrum; physical-layer network coding; two-way relay channel;
fLanguage
English
Journal_Title
Communications, IEEE Transactions on
Publisher
ieee
ISSN
0090-6778
Type
jour
DOI
10.1109/TCOMM.2012.051712.110224
Filename
6205660
Link To Document