CREATION OF A MULTI-LEVEL AUTOMATED CONTROL SYSTEM FOR MONITORING THE SAKHALIN–KHABAROVSK–VLADIVOSTOK MAIN GAS PIPELINE

A. Vasenin, S. Stepanov, V. Ippolitov, S. A. Pogodina, O. Kryukov
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Abstract

The features of the design and implementation of the integrated automated control system of the Sakhalin–Khabarovsk–Vladivostok main gas pipeline, which provides reliable and energy-efficient operation of natural gas supplies to consumers of the Far Eastern region of the Russian Federation and energy exports to foreign countries, are considered. The natural-climatic and geophysical conditions of laying the gas pipeline route are presented, which determine the set of functional capabilities for monitoring and managing technological processes of gas transportation. A hierarchical structure of an integrated automated process control system is proposed, which provides adequate monitoring of stochastic disturbances of a natural and technological nature based on intelligent sensors and basic principles of information exchange organization. Examples of innovative design solutions for the functional structure and architecture of the organizational and functional automated control system of the gas pipeline, as well as technical means as part of the structure of the complexes of technical means of automated control systems functioning as part of control rooms are considered. A scientifically based procedural algorithm for calculating the stress-strain state for the monitoring site based on the analysis of sensor readings for short-term forecasting of changes in the technical condition of the gas pipeline has been obtained.
建立多层次自动化控制系统,监测萨哈林-哈巴罗夫斯克-符拉迪沃斯托克主要天然气管道
审议了萨哈林-哈巴罗夫斯克-符拉迪沃斯托克主要天然气管道综合自动化控制系统的设计和实施特点,该系统向俄罗斯联邦远东地区的消费者提供可靠和节能的天然气供应,并向外国出口能源。提出了天然气管道线路铺设的自然气候条件和地球物理条件,这些条件决定了天然气输送工艺过程监测和管理的功能能力。基于智能传感器和信息交换组织的基本原理,提出了一种集成自动化过程控制系统的分层结构,可以对自然和技术性质的随机干扰进行充分的监测。考虑了燃气管道组织和功能自动化控制系统的功能结构和体系结构,以及作为控制室组成部分的自动化控制系统技术手段综合体结构的技术手段的创新设计方案实例。通过对传感器读数的分析,获得了一种科学的计算监测现场应力应变状态的程序算法,用于短期预测输气管道技术状态的变化。
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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