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Repairing a Single Erasure in Reed-Solomon Codes with Side Information
Conference proceeding

Repairing a Single Erasure in Reed-Solomon Codes with Side Information

Thi Xinh Dinh, Ba Thong Le, Son Hoang Dau, Serdar Boztas, Stanislav Kruglik, Han Mao Kiah, Emanuele Viterbo, Tuvi Etzion, Yeow Meng Chee, IEEE, …
Proceedings / IEEE International Symposium on Information Theory, pp.2122-2127
07/07/2024

Abstract

Bandwidth Information theory Maintenance engineering Reed-Solomon codes Standards Symbols
We generalize the problem of recovering a lost/erased symbol in a Reed-Solomon code to the scenario in which some side information about the lost symbol is known. The side information is represented as a set S of linearly independent combinations of the sub-symbols of the lost symbol. When S=\varnothing , this reduces to the standard problem of repairing a single codeword symbol. When S is a set of sub-symbols of the erased one, this becomes the repair problem with partially lost/erased symbol. We first establish that the minimum repair bandwidth depends on \vert S\vert and not the content of S and construct a lower bound on the repair bandwidth of a linear repair scheme with side information S We then consider the well-known subspace-polynomial repair schemes and show that their repair bandwidths can be optimized by choosing the right subspaces. Finally, we demonstrate several parameter regimes where the optimal bandwidths can be achieved for full-length Reed-Solomon codes.

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