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DEVELOPMENT OF A SPATIAL-DISTRIBUTED CONTROL SYSTEM FOR PREPARATION OF PULSE GAS

Yuri Ilyushin, Olga Afanaseva

First published: 2020-09-20https://doi.org/10.5593/sgem2020/2.1/s08.061View metrics

Abstract

The pulse gas preparation unit is an important part of the compressor station. The quality of the pulsed gas sent to the needs of the entire workshop depends on the degree of its purification from acidic impurities, such as CO2 and H2S. This process takes place in an absorption column. The use of industrial control systems at such enterprises makes it possible to control processes remotely. At the same time, both technical and economic costs of production become less. The impulse gas preparation unit must ensure uninterrupted supply of natural gas for technological needs, therefore, in terms of CO2 and H2S content, it must meet the following requirements: CO2 content not more than 2% and hydrogen sulfide content not more than 0.0004 mol. % Automated system should function without the constant presence of maintenance personnel. The pulsed gas preparation unit (PGPU) must provide a constant supply of pulsed gas for the operation of the compressor shop with the highest possible cleaning of unwanted impurities. In accordance with the requirements of PGPU, it must be equipped with facilities ensuring the highest possible environmental safety. The article discusses the technological process of natural gas purification from impurities, proposes a spatially distributed control system for a pulsed gas preparation plant, and describes a synthesis technique for a distributed high-precision controller consisting of amplifying differentiating and integrating units. The model was built in Aspen's HYSYS 9.0 program.

Publication Impact Profile

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  • CrossRef - Citation Indexes: 2
  • Scopus - Citation Indexes: 12
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Publication details

Title
DEVELOPMENT OF A SPATIAL-DISTRIBUTED CONTROL SYSTEM FOR PREPARATION OF PULSE GAS
Authors
Yuri Ilyushin, Olga Afanaseva
Proceedings
SGEM International Multidisciplinary Scientific GeoConference EXPO Proceedings; 20th International Multidisciplinary Scientific GeoConference Proceedings SGEM 2020, Informatics, Geoinformatics and Remote Sensing
Publisher
STEF92 Technology
Year
2020
Pages
475-482
SWS Citekey
Ilyushin20208475482
ISSN
1314-2704
ISBN
978-619-7603-06-4
Language
en
Publication type
Conference Paper
Keywords
References8
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  3. Zaporozhets E.P., Shostak N.A. Efficiency Estimation of the Single- and Multicomponent Anti-hydrate Reagents. Zapiski Gornogo Instituta / Journal of Mining Institute, v. 238, pp. 423-439, 2019. DOI: 10.31897/PMI.2019.4.423.

  4. Ilyushin A.N., Shilkina I.D., Afanasev P.M. Design of Automated Control System Supporting Temperature Field in, International Multi-Conference on Industrial Engineering and Modern Technologies, FarEastCon 2019, Vladivostok, Russia, pp. 1-4, 2019. DOI: 10.1109/FarEastCon.2019.8934041

  5. Ilyushin A.N., Kovalev D. A., Afanasev P. M. Development of Information Measuring Complex of Distributed Pulse Control System, 2019 International Multi-Conference on Industrial Engineering and Modern Technologies (FarEastCon), Vladivostok, Russia, pp. 1-5, 2019. DOI: 10.1109/FarEastCon.2019.8934173

  6. Kukharova T.V., Pershin I.M. Conditions of Application of Distributed Systems Synthesis Methods to Multidimensional Object, 2018 International Multi-Conference on Industrial Engineering and Modern Technologies, FarEastCon 2018, 2019. № 8602749 DOI: 10.1109/FarEastCon.2018.8602749

  7. Martirosyan A.V., Martirosyan K.V., Chernyshev A.B. Application of Fourier Series in Distributed Control Systems Simulation, 2019 IEEE Conference of Russian Young Researchers in Electrical and Electronic Engineering (EIConRus) (January 28-31), St. Petersburg, pp. 609 – 613, 2019. DOI: 10.1109/EIConRus.2019.8656865

  8. Martirosyan A.V., Martirosyan K.V., Chernyshev A.B. Methods of distributed systems’ structured modeling, 2016 IEEE NW Russia Young Researchers in Electrical and Electronic Engineering Conference (February 2-3), St. Petersburg, pp. 283 – 289, 2016. DOI: 10.1109/EIConRusNW.2016.74481

Citing literature

Number of times cited according to Crossref: 6

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