Analysis of nested CRC with additional net data by means of stochastic automata for safety-critical communication

F. Schiller, T. Mattes
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引用次数: 5

Abstract

Cyclic Redundancy Check (CRC) is an approved coding method for error detection. It ensures a low probability of undetected errors, i.e. a low residual error probability, and is easy to implement. In industrial fieldbus systems, communication is usually executed through different layers. Each layer may have its specific check such that a nesting of checks exists. At present, this nesting is not included in the safety proof of systems. Hence, additional effort is made to achieve the required degree of safety which was probably on hand but could not be proven. The paper presents a method to involve the nesting in the calculation of the residual error probability by means of stochastic automata. This method helps to reduce the number of worst case assumptions in the overall safety proof and finally to reduce the necessary on-line efforts like the number of parity bits.
基于随机自动机的具有附加网络数据的嵌套CRC安全关键通信分析
循环冗余校验(CRC)是一种公认的错误检测编码方法。它保证了低概率的未检测到的错误,即低残差概率,并且易于实现。在工业现场总线系统中,通信通常通过不同的层来执行。每一层都可能有其特定的检查,这样就存在一个检查嵌套。目前,这种嵌套不包括在系统的安全证明中。因此,需要作出额外的努力,以达到所需的安全程度,这种程度可能已经存在,但无法证明。本文提出了一种利用随机自动机计算残差概率时引入嵌套的方法。这种方法有助于减少整体安全证明中最坏情况假设的数量,并最终减少必要的在线工作,如奇偶校验位的数量。
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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