为自动消防系统进行数字自动机的合成

K. Volkova
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引用次数: 0

摘要

世界上的工业每年都在增长:工业企业的数量在增长,随之而来的是事故的数量。石油是当今最常见的用于合成和生产的产品。提高炼油厂的消防系统水平仍然是保护人们免受技术危害的最重要组成部分之一。创新的速度使得人工智能可以应用于自动消防系统的创建。研究目标。本研究旨在建立一个自动化综合消防系统(AISPPO)的模型。通过综合数字自动机和最小化控制功能的数字模型,创建了一个自动化综合消防系统系统。材料和方法。为了解决研究中存在的问题,采用了构建自动化综合消防系统图形化算法的方法。该系统是解决炼油工业设施安全问题的新途径。结果。在炼油厂火灾探测和监测的自动化综合系统中提出的数字自动化软件实施的新模型,使得有可能创建一个关于企业结构中所有潜在类型故障的计算和分析数据库,以便培训人员并更改现有的方法文件和指示,以便在特定情况下采取人员行动。结论。开发的技术允许您将包含在环图中的输入信号处理成中间形式,用于使用创新工具合成数字自动机。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
CONDUCTING A SYNTHESIS OF A DIGITAL AUTOMATON FOR AN AUTOMATED FIREFIGHTING SYSTEM
Every year the industry in the world is gaining momentum: the number of industrial enterprises is growing, and with it the number of accidents at them. Oil today is the most common product for the synthesis and production of products. Increasing the level of fire protection systems at oil refine¬ries remains one of the most important components of protecting people from technogenic hazards. The speed of innovation allows the application of artificial intelligence in the creation of automated fire protection systems. Research objective. This study is aimed at building a model of an automated integrated fire protection system (AISPPO).Through the synthesis of digital automata and minimizing the control functions of the digital model is created a system of automated integrated fire protection system. Materials and methods. To solve the problems of research used methods of constructing graphical algorithms of automated integrated fire protection system. This system is a new approach to solving the issue of safety of industrial facilities in the oil refining industry. Results. The proposed new model of the software implementation of a digital automaton in an automated integrated system of fire detection and monitoring of an oil refinery has made it possible to create a bank of calculated and analytical data on all potential types of failures in the structure of the enterprise in order to train personnel and make changes to existing methodological documents and instructions for personnel actions in a particular situation. Conclusion. The developed technology allows you to process the incoming signal contained in cyclograms into an intermediate form for the synthesis of digital automata using innovative tools.
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