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List-decodable zero-rate codes

Author(s)
Alon, Noga; Bukh, Boris; Polyanskiy, Yury
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Abstract
We consider list decoding in the zero-rate regime for two cases: the binary alphabet and the spherical codes in Euclidean space. Specifically, we study the maximal τ ϵ [0,1] for which there exists an arrangement of M balls of relative Hamming radius τ in the binary hypercube (of arbitrary dimension) with the property that no point of the latter is covered by L or more of them. As M → ∞ the maximal τ decreases to a well-known critical value T[subscript L]. In this paper, we prove several results on the rate of this convergence. For the binary case, we show that the rate is Θ (M-¹) when L is even, thus extending the classical results of Plotkin and Levenshtein for L=2. For L=3 , the rate is shown to be Θ (M -(2/3) ). For the similar question about spherical codes, we prove the rate is Ω (M-¹) and O([mathematical figure; see resource]). ©2019
Date issued
2019-03
URI
https://hdl.handle.net/1721.1/124995
Department
Massachusetts Institute of Technology. Department of Electrical Engineering and Computer Science
Journal
IEEE Transactions on Information Theory
Publisher
Institute of Electrical and Electronics Engineers (IEEE)
Citation
Alon, Noga, Boris Bukh, and Yury Polyanskiy, "List-decodable zero-rate codes." IEEE Transactions on Information Theory 65, 3 (Mar. 2019): p. 1657-67 doi 10.1109/TIT.2018.2868957 ©2019 Author(s)
Version: Original manuscript
ISSN
0018-9448
1557-9654

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