Title :
A lattice compress-and-forward scheme
Author :
Song, Yiwei ; Devroye, Natasha
Author_Institution :
Dept. of Electr. & Comput. Eng., Univ. of Illinois at Chicago, Chicago, IL, USA
Abstract :
We present a nested lattice-code-based strategy that achieves the random-coding based Compress-and-Forward (CF) rate for the three node Gaussian relay channel. To do so, we first outline a lattice-based strategy for the (X + Z1, X + Z2) Wyner-Ziv lossy source-coding with side-information problem in Gaussian noise, a re-interpretation of the nested lattice-code-based Gaussian Wyner-Ziv scheme presented by Zamir, Shamai, and Erez. We use the notation (X + Z1, X + Z2) Wyner-Ziv to mean that the source is of the form X + Z1 and the side-information at the receiver is of the form X+Z2, for independent Gaussian X, Z1 and Z2. We use this (X + Z1, X + Z2) Wyner-Ziv scheme to implement a “structured” or lattice-code-based CF scheme for the Gaussian relay channel which achieves the same rate as the Cover-El Gamal CF rate achieved by random Gaussian codebooks.
Keywords :
Gaussian channels; Gaussian noise; channel coding; random codes; source coding; Cover-El Gamal CF; Gaussian noise; Wyner-Ziv lossy source-coding scheme; lattice compress-and-forward scheme; nested lattice-code-based strategy; node Gaussian relay channel; random Gaussian codebooks; receiver; side-information problem; Channel coding; Conferences; Decoding; Lattices; Relays;
Conference_Titel :
Information Theory Workshop (ITW), 2011 IEEE
Conference_Location :
Paraty
Print_ISBN :
978-1-4577-0438-3
DOI :
10.1109/ITW.2011.6089357