Partial Decode-Forward Relaying for the Gaussian Two-Hop Relay Network
Abstract
The multicast capacity of the Gaussian two-hop relay network with one source, relays, and destinations is studied. It is shown that a careful modification of the partial decode--forward coding scheme, whereby the relays cooperate through degraded sets of message parts, achieves the cutset upper bound within bits regardless of the channel gains and power constraints. This scheme improves upon a previous scheme by Chern and Ozgur, which is also based on partial decode--forward yet has an unbounded gap from the cutset bound for destinations. When specialized to independent codes among relays, the proposed scheme achieves within bits from the cutset bound. The computation of this relaxation involves evaluating mutual information across cuts out of the total possible cuts, providing a very simple linear-complexity algorithm to approximate the single-source multicast capacity of the Gaussian two-hop relay network.
Cite
@article{arxiv.1508.00443,
title = {Partial Decode-Forward Relaying for the Gaussian Two-Hop Relay Network},
author = {Jing Li and Young-Han Kim},
journal= {arXiv preprint arXiv:1508.00443},
year = {2015}
}
Comments
7 pages (2 columns), 4 figures, submitted to the IEEE Transactions on Information Theory