A new Capacity-Achieving Private Information Retrieval Scheme with (Almost) Optimal File Length for Coded Servers
Abstract
In a distributed storage system, private information retrieval (PIR) guarantees that a user retrieves one file from the system without revealing any information about the identity of its interested file to any individual server. In this paper, we investigate coded sever model of PIR, where each of files is distributed to the servers in the form of maximum distance separable (MDS) code for some and . As a result, we propose a new capacity-achieving coded linear PIR scheme such that it can be implemented with file length , which is much smaller than the previous best result . Notably, among all the capacity-achieving coded linear PIR schemes, we show that the file length is optimal if , and within a multiplicative gap of a lower bound on the minimum file length otherwise.
Keywords
Cite
@article{arxiv.1903.06921,
title = {A new Capacity-Achieving Private Information Retrieval Scheme with (Almost) Optimal File Length for Coded Servers},
author = {Jinbao Zhu and Qifa Yan and Chao Qi and Xiaohu Tang},
journal= {arXiv preprint arXiv:1903.06921},
year = {2019}
}
Comments
17 pages, submitted to IEEE for possible publication