English

Partial Decode-Forward Relaying for the Gaussian Two-Hop Relay Network

Information Theory 2015-08-04 v1 math.IT

Abstract

The multicast capacity of the Gaussian two-hop relay network with one source, NN relays, and LL 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 (1/2)logN(1/2)\log N 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 L2L \ge 2 destinations. When specialized to independent codes among relays, the proposed scheme achieves within logN\log N bits from the cutset bound. The computation of this relaxation involves evaluating mutual information across L(N+1)L(N+1) cuts out of the total L2NL 2^N possible cuts, providing a very simple linear-complexity algorithm to approximate the single-source multicast capacity of the Gaussian two-hop relay network.

Keywords

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

R2 v1 2026-06-22T10:25:04.193Z