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23-07-2024

MDS array codes with efficient repair and small sub-packetization level

Authors: Lei Li, Xinchun Yu, Chenhao Ying, Liang Chen, Yuanyuan Dong, Yuan Luo

Published in: Designs, Codes and Cryptography | Issue 11/2024

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Abstract

The article discusses the critical role of Maximum Distance Separable (MDS) codes in distributed storage systems, highlighting the need for efficient repair and small sub-packetization levels to enhance data reliability and reduce storage costs. It introduces two families of MDS array codes, one over a finite field and the other over a binary polynomial ring, both offering improved sub-packetization levels and efficient repair mechanisms. The first family generalizes existing codes with a flexible sub-packetization level, while the second family provides a more flexible sub-packetization level over a binary ring. The article also presents an algorithm to find the minimum prime number guaranteeing the MDS property of the binary codes. The evaluation section compares the proposed codes with related works, demonstrating their advantages in terms of flexibility and efficiency. The article concludes by emphasizing the significance of the proposed codes in addressing the challenges of real-world data centers, making it a valuable resource for specialists in the field of coding theory and distributed storage systems.
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Metadata
Title
MDS array codes with efficient repair and small sub-packetization level
Authors
Lei Li
Xinchun Yu
Chenhao Ying
Liang Chen
Yuanyuan Dong
Yuan Luo
Publication date
23-07-2024
Publisher
Springer US
Published in
Designs, Codes and Cryptography / Issue 11/2024
Print ISSN: 0925-1022
Electronic ISSN: 1573-7586
DOI
https://doi.org/10.1007/s10623-024-01440-8

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