English

Finite field matrix channels for network coding

Information Theory 2018-02-01 v4 math.IT

Abstract

In 2010, Silva, Kschischang and K\"otter studied certain classes of finite field matrix channels in order to model random linear network coding where exactly tt random errors are introduced. In this paper we consider a generalisation of these matrix channels where the number of errors is not required to be constant, indeed the number of errors may follow any distribution. We show that a capacity-achieving input distribution can always be taken to have a very restricted form (the distribution should be uniform given the rank of the input matrix). This result complements, and is inspired by, a paper of Nobrega, Silva and Uchoa-Filho, that establishes a similar result for a class of matrix channels that model network coding with link erasures. Our result shows that the capacity of our channels can be expressed as a maximisation over probability distributions on the set of possible ranks of input matrices: a set of linear rather than exponential size.

Keywords

Cite

@article{arxiv.1601.06037,
  title  = {Finite field matrix channels for network coding},
  author = {Simon R. Blackburn and Jessica Claridge},
  journal= {arXiv preprint arXiv:1601.06037},
  year   = {2018}
}

Comments

21 pages. A significant revision: the main counting arguments shortened; computational results added; other minor revisions throughout

R2 v1 2026-06-22T12:34:56.663Z