Mathematical Model and Method for Diagnosing the Operability of Information and Control Systems

O. Syrotkina, Ziad Kobti, M. Aleksieiev, B. Moroz, I. Udovyk, G. Diachenko
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Abstract

This paper focuses on the development of mathematical methods for diagnosing the operability of complex structured information and control systems with arbitrary topology in real time. We describe a model based on graph analytics which allows us to analyze various options for changing the state of information flows as they pass through the system’s structural modules. As a result, it is possible to calculate the failure coefficients for the structural modules of information and control systems and the connections between them. In order to detect and forecast failures, a software application has been developed using the mathematical methods proposed in this paper. Conclusions are drawn about increasing the probability of failure-free operation of the system when using the proposed methods for diagnosing and predicting failures.
信息与控制系统可操作性诊断的数学模型与方法
本文主要研究具有任意拓扑结构的复杂信息和控制系统的可操作性实时诊断的数学方法。我们描述了一个基于图形分析的模型,该模型允许我们在信息流通过系统的结构模块时分析用于改变信息流状态的各种选项。从而可以计算出信息系统和控制系统结构模块的失效系数以及它们之间的连接。为了检测和预测故障,利用本文提出的数学方法开发了一个应用软件。利用所提出的方法进行故障诊断和预测,可以提高系统无故障运行的概率。
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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