English

On the Index Coding Problem and its Relation to Network Coding and Matroid Theory

Information Theory 2008-10-02 v1 math.IT

Abstract

The \emph{index coding} problem has recently attracted a significant attention from the research community due to its theoretical significance and applications in wireless ad-hoc networks. An instance of the index coding problem includes a sender that holds a set of information messages X={x1,...,xk}X=\{x_1,...,x_k\} and a set of receivers RR. Each receiver ρ=(x,H)R\rho=(x,H)\in R needs to obtain a message xXx\in X and has prior \emph{side information} comprising a subset HH of XX. The sender uses a noiseless communication channel to broadcast encoding of messages in XX to all clients. The objective is to find an encoding scheme that minimizes the number of transmissions required to satisfy the receivers' demands with \emph{zero error}. In this paper, we analyze the relation between the index coding problem, the more general network coding problem and the problem of finding a linear representation of a matroid. In particular, we show that any instance of the network coding and matroid representation problems can be efficiently reduced to an instance of the index coding problem. Our reduction implies that many important properties of the network coding and matroid representation problems carry over to the index coding problem. Specifically, we show that \emph{vector linear codes} outperform scalar linear codes and that vector linear codes are insufficient for achieving the optimum number of transmissions.

Keywords

Cite

@article{arxiv.0810.0068,
  title  = {On the Index Coding Problem and its Relation to Network Coding and Matroid Theory},
  author = {Salim Y. El Rouayheb and Alex Sprintson and Costas N. Georghiades},
  journal= {arXiv preprint arXiv:0810.0068},
  year   = {2008}
}

Comments

submitted to transactions on information theory

R2 v1 2026-06-21T11:25:59.528Z