Construction of high rate run-length limited codes using arithmetic decoding

A. Fionov, B. Ryabko
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Abstract

We suggest an approach to constructing low-redundant RLL (d; k)-codes whose complexity does not depend on the code length and is determined solely by the achievable redundancy r, the time and space complexity being O(log2(1/r)) and O(log(1/r)), respectively, as r → 0. First we select code-words whose combinations may constitute all (d; k)-constrained sequences of any length. Then we use arithmetic decoding to produce these codewords with (or close to) optimal probabilities from an input sequence. The coding algorithms and estimates of performance are provided.
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用算术译码构造高速率行长有限码
我们提出了一种构建低冗余RLL (d)的方法;k)——复杂度与码长无关,仅由可实现的冗余度r决定的码,时间复杂度为0 (log2(1/r)),空间复杂度为0 (log(1/r)), r→0。首先,我们选择码字,其组合可以构成所有(d;任意长度的约束序列。然后我们使用算术解码从输入序列中产生具有(或接近)最优概率的码字。给出了编码算法和性能估计。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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