English

Private Information Retrieval from Coded Storage Systems with Colluding, Byzantine, and Unresponsive Servers

Information Theory 2018-09-06 v3 math.IT

Abstract

The problem of Private Information Retrieval (PIR) from coded storage systems with colluding, byzantine, and unresponsive servers is considered. An explicit scheme using an [n,k][n,k] Reed-Solomon storage code is designed, protecting against tt-collusion and handling up to bb byzantine and rr unresponsive servers, when n>k+t+2b+r1n>k+t+2b+r-1. This scheme achieves a PIR rate of nr(k+2b+t1)nr\frac{n-r-(k+2b+t-1)}{n-r}. In the case where the capacity is known, namely when k=1k=1, it is asymptotically capacity-achieving as the number of files grows. Lastly, the scheme is adapted to symmetric PIR.

Keywords

Cite

@article{arxiv.1806.08006,
  title  = {Private Information Retrieval from Coded Storage Systems with Colluding, Byzantine, and Unresponsive Servers},
  author = {Razane Tajeddine and Oliver W. Gnilke and David Karpuk and Ragnar Freij-Hollanti and Camilla Hollanti},
  journal= {arXiv preprint arXiv:1806.08006},
  year   = {2018}
}

Comments

This is an extended journal version of the ISIT paper arXiv:1802.03731

R2 v1 2026-06-23T02:36:43.152Z