English

DoF Analysis for (M, N)-Channels through a Number-Filling Puzzle

Information Theory 2024-02-06 v1 Signal Processing math.IT

Abstract

We consider a K\sf K user interference network with general connectivity, described by a matrix \matN\mat{N}, and general message flows, described by a matrix \matM\mat{M}. Previous studies have demonstrated that the standard interference scheme (IA) might not be optimal for networks with sparse connectivity. In this paper, we formalize a general IA coding scheme and an intuitive number-filling puzzle for given \matM\mat{M} and \matN\mat{N} in a way that the score of the solution to the puzzle determines the optimum sum degrees that can be achieved by the IA scheme. A solution to the puzzle is proposed for a general class of symmetric channels, and it is shown that this solution leads to significantly higher \SDoF\SDoF than the standard IA scheme.

Keywords

Cite

@article{arxiv.2402.02189,
  title  = {DoF Analysis for (M, N)-Channels through a Number-Filling Puzzle},
  author = {Yue Bi and Yue Wu and Cunqing Hua},
  journal= {arXiv preprint arXiv:2402.02189},
  year   = {2024}
}