Intellectualization of Emergency Control of Power Systems on the Basis of Incorporated Ontologies of Knowledge-Bases
The research deals with improvement of methods and systems of controlling integrated power systems (IPSs) on the basis of intellectualization of decision-making support. Complex analysis of large-scale accidents at power facilities is performed, and their causes and damages are determined. There is...
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Online Access: | https://doi.org/10.2478/ama-2019-0012 |
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doaj-a5dfac41587142d29d7e326092ff49e12021-09-06T19:41:06ZengSciendoActa Mechanica et Automatica 2300-53192019-06-01132869410.2478/ama-2019-0012ama-2019-0012Intellectualization of Emergency Control of Power Systems on the Basis of Incorporated Ontologies of Knowledge-BasesMorkun Vladimir0Kotov Ihor1Faculty of Information Technology, Kryvyi Rih National University, Vitalii Matusevych Street, 11, Kryvyi Rih, 50027UkraineFaculty of Information Technology, Kryvyi Rih National University, Vitalii Matusevych Street, 11, Kryvyi Rih, 50027UkraineThe research deals with improvement of methods and systems of controlling integrated power systems (IPSs) on the basis of intellectualization of decision-making support. Complex analysis of large-scale accidents at power facilities is performed, and their causes and damages are determined. There is substantiated topicality of building condition knowledge-bases as the foundation for developing decision-support systems in power engineering. The top priorities of the research include developing methods of building a knowledge base based on intensity models of control actions influencing the parameters of power system conditions and introducing the smart system into information contours of the automated dispatch control system (ADCS), as well as assessing practical results of the research. To achieve these goals, the authors apply methods of experiment planning, artificial intelligence, knowledge presentation, mathematical simulation, and mathematical statistics as well as methods of power systems studying. The basic research results include regression models of a power system sensitivity to control actions, methods of building a knowledge base based on the models of sensitivity matrices, a structure of the smart decision-support system, a scheme of introducing the decision-support system into the operating ADCS environment. The problem of building a knowledge base of the dispatch decision-support system on the basis of empirical data resulted from calculating experiments on the system diagram has been solved. The research specifies practical efficiency of the suggested approaches and developed models.https://doi.org/10.2478/ama-2019-0012power systemontologyknowledge-basedecision-making support systemon-line dispatch controlfactorial model |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Morkun Vladimir Kotov Ihor |
spellingShingle |
Morkun Vladimir Kotov Ihor Intellectualization of Emergency Control of Power Systems on the Basis of Incorporated Ontologies of Knowledge-Bases Acta Mechanica et Automatica power system ontology knowledge-base decision-making support system on-line dispatch control factorial model |
author_facet |
Morkun Vladimir Kotov Ihor |
author_sort |
Morkun Vladimir |
title |
Intellectualization of Emergency Control of Power Systems on the Basis of Incorporated Ontologies of Knowledge-Bases |
title_short |
Intellectualization of Emergency Control of Power Systems on the Basis of Incorporated Ontologies of Knowledge-Bases |
title_full |
Intellectualization of Emergency Control of Power Systems on the Basis of Incorporated Ontologies of Knowledge-Bases |
title_fullStr |
Intellectualization of Emergency Control of Power Systems on the Basis of Incorporated Ontologies of Knowledge-Bases |
title_full_unstemmed |
Intellectualization of Emergency Control of Power Systems on the Basis of Incorporated Ontologies of Knowledge-Bases |
title_sort |
intellectualization of emergency control of power systems on the basis of incorporated ontologies of knowledge-bases |
publisher |
Sciendo |
series |
Acta Mechanica et Automatica |
issn |
2300-5319 |
publishDate |
2019-06-01 |
description |
The research deals with improvement of methods and systems of controlling integrated power systems (IPSs) on the basis of intellectualization of decision-making support. Complex analysis of large-scale accidents at power facilities is performed, and their causes and damages are determined. There is substantiated topicality of building condition knowledge-bases as the foundation for developing decision-support systems in power engineering. The top priorities of the research include developing methods of building a knowledge base based on intensity models of control actions influencing the parameters of power system conditions and introducing the smart system into information contours of the automated dispatch control system (ADCS), as well as assessing practical results of the research. To achieve these goals, the authors apply methods of experiment planning, artificial intelligence, knowledge presentation, mathematical simulation, and mathematical statistics as well as methods of power systems studying. The basic research results include regression models of a power system sensitivity to control actions, methods of building a knowledge base based on the models of sensitivity matrices, a structure of the smart decision-support system, a scheme of introducing the decision-support system into the operating ADCS environment. The problem of building a knowledge base of the dispatch decision-support system on the basis of empirical data resulted from calculating experiments on the system diagram has been solved. The research specifies practical efficiency of the suggested approaches and developed models. |
topic |
power system ontology knowledge-base decision-making support system on-line dispatch control factorial model |
url |
https://doi.org/10.2478/ama-2019-0012 |
work_keys_str_mv |
AT morkunvladimir intellectualizationofemergencycontrolofpowersystemsonthebasisofincorporatedontologiesofknowledgebases AT kotovihor intellectualizationofemergencycontrolofpowersystemsonthebasisofincorporatedontologiesofknowledgebases |
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