信息和通信系统的一种形式化描述的面向对象模型

IF 0.2 Q4 ENGINEERING, ELECTRICAL & ELECTRONIC
V.O. Poddubnyi, R.Y. Gvozdov, Оleksand Sievierinov, V. Fedorchenko
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引用次数: 0

摘要

本文的目的是研究信息和通信系统形式化描述的算法。本文讨论了信息通信系统对象形式化表示的主要规定。需要指出的是,对信息通信系统进行形式化描述的主要环境有:物理环境、计算系统环境、用户环境、信息环境。信息和通信系统的这些组成部分将以非正式形式(以文本形式)加以详细考虑、分析和记录。需要一种机制来统一描述包含所有环境的系统。这样的描述将用定义良好的数学概念明确形式化。在信息和通信系统中制定信息安全策略时,单个形式化描述的机制或形式化描述的技术在理解上是明确的,并可作为控制描述。提出了一种信息通信系统形式化描述的算法。在该算法中,重点关注对象的类型和对象之间的相互作用。在这种方案中,注意力集中在对象、对象的特征以及与对象的交互类型等概念上。进一步考虑创建的框图(图形),以探索使用该模型模拟网络攻击的可能性。由于每个元素都包含将其连接到其他元素的字段,并且每次攻击都有一个使用图论的“入口点”,因此可以遍历图以确定网络攻击可能的水平传播路径。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Object-oriented model of a formal description of an information and communication system
The purpose of the article is to study algorithms for the formal description of information and communication systems. The article discusses the main provisions on the formal representation of objects of information and communication systems. It is noted that the main environments of the information and communication system that are subject to a formal description are: physical environment, computing system environment, user environment, information environment. These components of the information and communication system are considered in detail, analyzed and documented in an informal form (in the form of text). There is a need for a mechanism for a unified description of a system that includes all environments. Such a description will be unambiguously formalized with well-defined mathematical concepts. The mechanism of a single formal description or the technique of a formal description will be unambiguous in understanding and serve as a control description when developing an information security policy in an information and communication system. An algorithm for the formal description of the information and communication system is proposed. In this algorithm, it is proposed to focus on the types and interaction of objects with each other. In such a scheme, attention is focused on such concepts as the object, the characteristics of the object, and the type of interaction with the object. Further consideration of the created block diagrams (graphs) is proposed to explore the possibilities of using this model to simulate cyber-attacks. Since each element contains fields that connect it to other elements, and each attack has an "entry point" using graph theory, it is possible to traverse the graph to determine the possible horizontal propagation paths of a cyber-attack.
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来源期刊
Visnyk NTUU KPI Seriia-Radiotekhnika Radioaparatobuduvannia
Visnyk NTUU KPI Seriia-Radiotekhnika Radioaparatobuduvannia ENGINEERING, ELECTRICAL & ELECTRONIC-
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