Calculations of the complex network’s steady-state modes by brining it to equivalent open

The paper considers the development of the idea of diakoptics as applied to the calculation of the steady-state modes of energy system’s complex electrical networks. The well-known goal of diakoptics is to obtain the equations of state for the dedicated part of the system, the study of which is much...

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Main Authors: Akhmetbayev Dauren, Zhantlessova Assemgul, Akhmetbayev Arman
Format: Article
Language:English
Published: EDP Sciences 2018-01-01
Series:E3S Web of Conferences
Online Access:https://doi.org/10.1051/e3sconf/20185802022
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spelling doaj-67888e6da1364eac92105925e98b5a902021-02-02T07:06:32ZengEDP SciencesE3S Web of Conferences2267-12422018-01-01580202210.1051/e3sconf/20185802022e3sconf_rses2018_02022Calculations of the complex network’s steady-state modes by brining it to equivalent openAkhmetbayev Dauren0Zhantlessova Assemgul1Akhmetbayev Arman2Power Supply Department, S.Seifullin Kazakh Agrotechnical UniversityPower Supply Department, S.Seifullin Kazakh Agrotechnical UniversityDirection of Information Systems of JSC KaztelecomThe paper considers the development of the idea of diakoptics as applied to the calculation of the steady-state modes of energy system’s complex electrical networks. The well-known goal of diakoptics is to obtain the equations of state for the dedicated part of the system, the study of which is much simpler than the study of the initial system and can be achieved by improving its steady state equations. Technique for dividing a complex-closed system into a set of uncomplicated subsystems was developed based on the inverse form of nodal equations. Analytic expressions for the intersection circuits obtained based on identical equality of voltage at the nodes of the system division into subsystems are proposed. Using the example of 110kV network calculation, the technique for determining the matrixes of generalized parameters of the dedicated subsystems, the sizes of which depend on the number of their broken link is shown. Analytical determination of the equality condition of the voltage of subsystems intersections nodes, allowed analyzing a complex closed network by bringing it to an equivalent open.https://doi.org/10.1051/e3sconf/20185802022
collection DOAJ
language English
format Article
sources DOAJ
author Akhmetbayev Dauren
Zhantlessova Assemgul
Akhmetbayev Arman
spellingShingle Akhmetbayev Dauren
Zhantlessova Assemgul
Akhmetbayev Arman
Calculations of the complex network’s steady-state modes by brining it to equivalent open
E3S Web of Conferences
author_facet Akhmetbayev Dauren
Zhantlessova Assemgul
Akhmetbayev Arman
author_sort Akhmetbayev Dauren
title Calculations of the complex network’s steady-state modes by brining it to equivalent open
title_short Calculations of the complex network’s steady-state modes by brining it to equivalent open
title_full Calculations of the complex network’s steady-state modes by brining it to equivalent open
title_fullStr Calculations of the complex network’s steady-state modes by brining it to equivalent open
title_full_unstemmed Calculations of the complex network’s steady-state modes by brining it to equivalent open
title_sort calculations of the complex network’s steady-state modes by brining it to equivalent open
publisher EDP Sciences
series E3S Web of Conferences
issn 2267-1242
publishDate 2018-01-01
description The paper considers the development of the idea of diakoptics as applied to the calculation of the steady-state modes of energy system’s complex electrical networks. The well-known goal of diakoptics is to obtain the equations of state for the dedicated part of the system, the study of which is much simpler than the study of the initial system and can be achieved by improving its steady state equations. Technique for dividing a complex-closed system into a set of uncomplicated subsystems was developed based on the inverse form of nodal equations. Analytic expressions for the intersection circuits obtained based on identical equality of voltage at the nodes of the system division into subsystems are proposed. Using the example of 110kV network calculation, the technique for determining the matrixes of generalized parameters of the dedicated subsystems, the sizes of which depend on the number of their broken link is shown. Analytical determination of the equality condition of the voltage of subsystems intersections nodes, allowed analyzing a complex closed network by bringing it to an equivalent open.
url https://doi.org/10.1051/e3sconf/20185802022
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