arXiv · 0902.2436
Nested Lattice Codes for Gaussian Relay Networks with Interference
Abstract
In this paper, a class of relay networks is considered. We assume that, at a node, outgoing channels to its neighbors are orthogonal, while incoming signals from neighbors can interfere with each other. We are interested in the multicast capacity of these networks. As a subclass, we first focus on Gaussian relay networks with interference and find an achievable rate using a lattice coding scheme. It is shown that there is a constant gap between our achievable rate and the information theoretic cut-set bound. This is similar to the recent result by Avestimehr, Diggavi, and Tse, who showed such an approximate characterization of the capacity of general Gaussian relay networks. However, our achievability uses a structured code instead of a random one. Using the same idea used in the Gaussian case, we also consider linear finite-field symmetric networks with interference and characterize the capacity using a linear coding scheme.
Explore related subjects
Keep this discovery
Wooseok Nam, Sae-Young Chung, Yong H. Lee. 2009-02-14. Nested Lattice Codes for Gaussian Relay Networks with Interference. https://doi.org/10.1109/tit.2011.2170102
Cite the original work for its findings. Save a collection to share your selection of sources.