Algorithms of master models for designing generators and power system parts synchronizer

The technique for designing the automated control systems with a master model is proposed to be used for developing the adaptive devices for synchronizing generators and power system parts with high performance. The program motion trajectories for relative movement parameters of generator stress vec...

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Bibliographic Details
Main Authors: Yu. V. Khrushchev, N. A. Belyaev
Format: Article
Language:Russian
Published: Tomsk Polytechnic University 2009-06-01
Series:Известия Томского политехнического университета: Инжиниринг георесурсов
Subjects:
Online Access:http://izvestiya-tpu.ru/archive/article/view/1175
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author Yu. V. Khrushchev
N. A. Belyaev
author_facet Yu. V. Khrushchev
N. A. Belyaev
author_sort Yu. V. Khrushchev
collection DOAJ
description The technique for designing the automated control systems with a master model is proposed to be used for developing the adaptive devices for synchronizing generators and power system parts with high performance. The program motion trajectories for relative movement parameters of generator stress vectors and the parts of power systems formed on a control interval by synchronization are considered as the master models. The paper introduces the generalized structural-functional scheme of adaptive synchronization device and two advanced algorithms of master model operation. Each algorithm without overshoot delivers zero kinetic and potential energy values of synchronized object relative motion at the end of control interval. The authors tested the algorithms modeling synchronization of power system parts in Mustang.
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spelling doaj.art-c43e0ef303e74508b2baba8c49f120042023-06-03T21:13:07ZrusTomsk Polytechnic UniversityИзвестия Томского политехнического университета: Инжиниринг георесурсов2500-10192413-18302009-06-013234Algorithms of master models for designing generators and power system parts synchronizerYu. V. KhrushchevN. A. BelyaevThe technique for designing the automated control systems with a master model is proposed to be used for developing the adaptive devices for synchronizing generators and power system parts with high performance. The program motion trajectories for relative movement parameters of generator stress vectors and the parts of power systems formed on a control interval by synchronization are considered as the master models. The paper introduces the generalized structural-functional scheme of adaptive synchronization device and two advanced algorithms of master model operation. Each algorithm without overshoot delivers zero kinetic and potential energy values of synchronized object relative motion at the end of control interval. The authors tested the algorithms modeling synchronization of power system parts in Mustang.http://izvestiya-tpu.ru/archive/article/view/1175power systemsynchronous generatorsynchronizationsynchronizerstructural-functional schememaster model
spellingShingle Yu. V. Khrushchev
N. A. Belyaev
Algorithms of master models for designing generators and power system parts synchronizer
Известия Томского политехнического университета: Инжиниринг георесурсов
power system
synchronous generator
synchronization
synchronizer
structural-functional scheme
master model
title Algorithms of master models for designing generators and power system parts synchronizer
title_full Algorithms of master models for designing generators and power system parts synchronizer
title_fullStr Algorithms of master models for designing generators and power system parts synchronizer
title_full_unstemmed Algorithms of master models for designing generators and power system parts synchronizer
title_short Algorithms of master models for designing generators and power system parts synchronizer
title_sort algorithms of master models for designing generators and power system parts synchronizer
topic power system
synchronous generator
synchronization
synchronizer
structural-functional scheme
master model
url http://izvestiya-tpu.ru/archive/article/view/1175
work_keys_str_mv AT yuvkhrushchev algorithmsofmastermodelsfordesigninggeneratorsandpowersystempartssynchronizer
AT nabelyaev algorithmsofmastermodelsfordesigninggeneratorsandpowersystempartssynchronizer