Description of the method of fuzzy situational control based on a composite hybrid model of a complex technical system

Objective. The aim of the study is to generalize the accumulated experience of fuzzy situational control based on a compositional hybrid model of a complex technical system in the form of an algorithm and, on this basis, to form recommendations on the methodology for the formation and identification...

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Main Author: D. Yu. Avramenko
Format: Article
Language:Russian
Published: Dagestan State Technical University 2022-02-01
Series:Вестник Дагестанского государственного технического университета: Технические науки
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Online Access:https://vestnik.dgtu.ru/jour/article/view/997
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author D. Yu. Avramenko
author_facet D. Yu. Avramenko
author_sort D. Yu. Avramenko
collection DOAJ
description Objective. The aim of the study is to generalize the accumulated experience of fuzzy situational control based on a compositional hybrid model of a complex technical system in the form of an algorithm and, on this basis, to form recommendations on the methodology for the formation and identification of situations, determining parameters and solutions for managing a complex technical system under conditions incomplete data to improve the accuracy of control decisions. Method. The use of a compositional hybrid model solves the problem of describing and modeling the system in conditions of incomplete data and the impossibility of obtaining information about the entire range of the system's operation. Fuzzy situational control makes it possible to develop control decisions in accordance with the chosen control strategy and take into account the specifics of the system thanks to the compositional model. Result. An algorithm for fuzzy situational control of complex technical systems based on compositional hybrid models is proposed. The stages, features, advantages and disadvantages of fuzzy situational control for this type of systems are considered. The procedure for determining and unambiguously identifying emerging fuzzy situations for the system is given, and a method for analyzing and developing typical control strategies is also considered. The compositional hybrid model of a complex technical system considered in the article describes the operation of the experimental compressor unit ETsK-55. Conclusion. The main advantages of the developed fuzzy situational method for managing complex technical systems include: integration of the control system with existing elements of the system; better use of available resources; adaptability and reliability of a control method based on fuzzy situational networks and a composite hybrid model of the system. Management strategies have been defined to meet the customer's requirements for product quality, as well as the safety of personnel and equipment, trouble-free production and saving resources.
format Article
id doaj-art-cf70be8a08f64e288afa20b79ea54a52
institution Kabale University
issn 2073-6185
2542-095X
language Russian
publishDate 2022-02-01
publisher Dagestan State Technical University
record_format Article
series Вестник Дагестанского государственного технического университета: Технические науки
spelling doaj-art-cf70be8a08f64e288afa20b79ea54a522025-08-20T03:57:19ZrusDagestan State Technical UniversityВестник Дагестанского государственного технического университета: Технические науки2073-61852542-095X2022-02-01484445410.21822/2073-6185-2021-48-4-44-54660Description of the method of fuzzy situational control based on a composite hybrid model of a complex technical systemD. Yu. Avramenko0Branch of the National Research University Moscow Power Engineering Institute in SmolenskObjective. The aim of the study is to generalize the accumulated experience of fuzzy situational control based on a compositional hybrid model of a complex technical system in the form of an algorithm and, on this basis, to form recommendations on the methodology for the formation and identification of situations, determining parameters and solutions for managing a complex technical system under conditions incomplete data to improve the accuracy of control decisions. Method. The use of a compositional hybrid model solves the problem of describing and modeling the system in conditions of incomplete data and the impossibility of obtaining information about the entire range of the system's operation. Fuzzy situational control makes it possible to develop control decisions in accordance with the chosen control strategy and take into account the specifics of the system thanks to the compositional model. Result. An algorithm for fuzzy situational control of complex technical systems based on compositional hybrid models is proposed. The stages, features, advantages and disadvantages of fuzzy situational control for this type of systems are considered. The procedure for determining and unambiguously identifying emerging fuzzy situations for the system is given, and a method for analyzing and developing typical control strategies is also considered. The compositional hybrid model of a complex technical system considered in the article describes the operation of the experimental compressor unit ETsK-55. Conclusion. The main advantages of the developed fuzzy situational method for managing complex technical systems include: integration of the control system with existing elements of the system; better use of available resources; adaptability and reliability of a control method based on fuzzy situational networks and a composite hybrid model of the system. Management strategies have been defined to meet the customer's requirements for product quality, as well as the safety of personnel and equipment, trouble-free production and saving resources.https://vestnik.dgtu.ru/jour/article/view/997fuzzy situational networksfuzzy situational controlcomplex technical systemscomposite hybrid modelsneural networksfuzzy networkscompressor unit
spellingShingle D. Yu. Avramenko
Description of the method of fuzzy situational control based on a composite hybrid model of a complex technical system
Вестник Дагестанского государственного технического университета: Технические науки
fuzzy situational networks
fuzzy situational control
complex technical systems
composite hybrid models
neural networks
fuzzy networks
compressor unit
title Description of the method of fuzzy situational control based on a composite hybrid model of a complex technical system
title_full Description of the method of fuzzy situational control based on a composite hybrid model of a complex technical system
title_fullStr Description of the method of fuzzy situational control based on a composite hybrid model of a complex technical system
title_full_unstemmed Description of the method of fuzzy situational control based on a composite hybrid model of a complex technical system
title_short Description of the method of fuzzy situational control based on a composite hybrid model of a complex technical system
title_sort description of the method of fuzzy situational control based on a composite hybrid model of a complex technical system
topic fuzzy situational networks
fuzzy situational control
complex technical systems
composite hybrid models
neural networks
fuzzy networks
compressor unit
url https://vestnik.dgtu.ru/jour/article/view/997
work_keys_str_mv AT dyuavramenko descriptionofthemethodoffuzzysituationalcontrolbasedonacompositehybridmodelofacomplextechnicalsystem