Abstract

Structure of microprocessed-based automation system (MBAS) of oil pumping station (OPS) «Alexandrovskaya», located on the territory of Tomsk region and forming part of the Oil Transporting Joint Stock Company «Transneft», developed in accordance with the requirements of the guidance document «Complex of the typical design choices automation of OPSs and crude storages on the basis of modern standard solutions and components».

Highlights

  • Improving the efficiency and reliability of the manufacturing machinery of oil pumping station possible through the use of microprocessor-based automation systems, implementing adaptive algorithms of logic control [1]

  • Microprocessor-based automation systems of oil pumping station are designed for monitoring, protection and control of manufacturing machinery, maintaining of its optimum operation mode, they variation to the computer workstation of the operator

  • microprocessed-based automation system (MBAS) has a distributed structure with central reserved processor that provides a centralized collection of data from process interface unit (PIU), as well as processing and centralized execution of algorithm of control and management all the equipment of the oil pumping station

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Summary

Introduction

Improving the efficiency and reliability of the manufacturing machinery of oil pumping station possible through the use of microprocessor-based automation systems, implementing adaptive algorithms of logic control [1]. Microprocessor-based automation systems of oil pumping station are designed for monitoring, protection and control of manufacturing machinery, maintaining of its optimum operation mode, they variation to the computer workstation of the operator. The purpose of this work is to create a block schematic diagram of MBAS, performing the functions of automatic control technological parameters, automatic protection of manufacturing machinery for emergency and limit values of monitored parameters, program management and maintenance of the standard operation mode of manufacturing machinery, display and record the main controllable technological parameters, preparation and transmission of information processing results in the supervisory control system

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Conclusions

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