Randomized generation of error control codes with automata and transducers

S. Konstantinidis, Nelma Moreira, Rogério Reis
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引用次数: 1

Abstract

We introduce the concept of an -maximal error-detecting block code, for some parameter in (0,1), in order to formalize the situation where a block code is close to maximal with respect to being error-detecting. Our motivation for this is that it is computationally hard to decide whether an error-detecting block code is maximal. We present an output-polynomial time randomized algorithm that takes as input two positive integers N , l and a specification of the errors permitted in some application, and generates an error-detecting, or error-correcting, block code of length l that is 99%-maximal, or contains N words with a high likelihood. We model error specifications as (nondeterministic) transducers, which allow one to represent any rational combination of substitution and synchronization errors. We also present some elements of our implementation of various error-detecting properties and their associated methods. Then, we show several tests of the implemented randomized algorithm on various error specifications. A methodological contribution is the presentation of how various desirable error combinations can be expressed formally and processed algorithmically.
随机生成带有自动机和换能器的错误控制码
对于(0,1)中的某个参数,我们引入了极大检错块码的概念,以便形式化块码在检错方面接近极大值的情况。我们这样做的动机是,在计算上很难决定一个错误检测块代码是否最大。我们提出了一种输出多项式时间随机化算法,该算法以两个正整数N、l和某些应用程序中允许的错误规范为输入,并生成长度为l的错误检测或错误纠正块码,该块码99%最大,或包含N个具有高可能性的单词。我们将错误规范建模为(不确定性)换能器,它允许人们表示替换和同步错误的任何合理组合。我们还介绍了实现各种错误检测属性及其相关方法的一些元素。然后,我们展示了实现的随机化算法在各种误差规范下的几个测试。方法上的贡献是介绍了各种理想的误差组合如何正式表示和算法处理。
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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