English

Quadratic-Curve-Lifted Reed-Solomon Codes

Information Theory 2022-02-21 v3 Algebraic Geometry math.IT

Abstract

Lifted codes are a class of evaluation codes attracting more attention due to good locality and intermediate availability. In this work we introduce and study quadratic-curve-lifted Reed-Solomon (QC-LRS) codes, where the codeword symbols whose coordinates are on a quadratic curve form a codeword of a Reed-Solomon code. We first develop a necessary and sufficient condition on the monomials which form a basis the code. Based on the condition, we give upper and lower bounds on the dimension and show that the asymptotic rate of a QC-LRS code over Fq\mathbb{F}_q with local redundancy rr is 1Θ(q/r)0.22841-\Theta(q/r)^{-0.2284}. Moreover, we provide analytical results on the minimum distance of this class of codes and compare QC-LRS codes with lifted Reed-Solomon codes by simulations in terms of the local recovery capability against erasures. For short lengths, QC-LRS codes have better performance in local recovery for erasures than LRS codes of the same dimension.

Keywords

Cite

@article{arxiv.2109.14478,
  title  = {Quadratic-Curve-Lifted Reed-Solomon Codes},
  author = {Hedongliang Liu and Lukas Holzbaur and Nikita Polyanskii and Sven Puchinger and Antonia Wachter-Zeh},
  journal= {arXiv preprint arXiv:2109.14478},
  year   = {2022}
}

Comments

16 pages, 2 figures. A short version is accepted by WCC 2022 (12th International Workshop on Coding and Cryptography)

R2 v1 2026-06-24T06:29:05.184Z