A Shannon-Theoretic Approach to the Storage-Retrieval Tradeoff in PIR Systems
Abstract
We consider the storage-retrieval rate tradeoff in private information retrieval (PIR) systems using a Shannon-theoretic approach. Our focus is mostly on the canonical two-message two-database case, for which a coding scheme based on random codebook generation and the binning technique is proposed. This coding scheme reveals a hidden connection between PIR and the classic multiple description source coding problem. We first show that when the retrieval rate is kept optimal, the proposed non-linear scheme can achieve better performance over any linear scheme. Moreover, a non-trivial storage-retrieval rate tradeoff can be achieved beyond space-sharing between this extreme point and the other optimal extreme point, achieved by the retrieve-everything strategy. We further show that with a method akin to the expurgation technique, one can extract a zero-error PIR code from the random code. Outer bounds are also studied and compared to establish the superiority of the non-linear codes over linear codes.
Keywords
Cite
@article{arxiv.2301.02155,
title = {A Shannon-Theoretic Approach to the Storage-Retrieval Tradeoff in PIR Systems},
author = {Chao Tian and Hua Sun and Jun Chen},
journal= {arXiv preprint arXiv:2301.02155},
year = {2023}
}
Comments
2 figures. Extended version of the ISIT-18 paper, with a new connection to multiple description source coding. Submitted to Information (MDPI)