KTM TOKAMAK OPERATION SCENARIOS SOFTWARE INFRASTRUCTURE

One of the largest problems for tokamak devices such as Kazakhstan Tokamak for Material Testing (KTM) is the operation scenarios' development and execution. Operation scenarios may be varied often, so a convenient hardware and software solution is required for scenario management and execution....

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Main Authors: V PAVLOV, K. BAYSTRUKOV, YU. GOLOBOKOV, A. OVCHINNIKOV, A. MEZENTSEV, S. MERKULOV, A. LEE, I. TAZHIBAYEVA, G. SHAPOVALOV
Format: Article
Language:English
Published: Elsevier 2014-10-01
Series:Nuclear Engineering and Technology
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S1738573315301066
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author V PAVLOV
K. BAYSTRUKOV
YU. GOLOBOKOV
A. OVCHINNIKOV
A. MEZENTSEV
S. MERKULOV
A. LEE
I. TAZHIBAYEVA
G. SHAPOVALOV
author_facet V PAVLOV
K. BAYSTRUKOV
YU. GOLOBOKOV
A. OVCHINNIKOV
A. MEZENTSEV
S. MERKULOV
A. LEE
I. TAZHIBAYEVA
G. SHAPOVALOV
author_sort V PAVLOV
collection DOAJ
description One of the largest problems for tokamak devices such as Kazakhstan Tokamak for Material Testing (KTM) is the operation scenarios' development and execution. Operation scenarios may be varied often, so a convenient hardware and software solution is required for scenario management and execution. Dozens of diagnostic and control subsystems with numerous configuration settings may be used in an experiment, so it is required to automate the subsystem configuration process to coordinate changes of the related settings and to prevent errors. Most of the diagnostic and control subsystems software at KTM was unified using an extra software layer, describing the hardware abstraction interface. The experiment sequence was described using a command language. The whole infrastructure was brought together by a universal communication protocol supporting various media, including Ethernet and serial links. The operation sequence execution infrastructure was used at KTM to carry out plasma experiments.
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spelling doaj.art-ef842165c6fd41cfa94ee5d331bbac182022-12-21T20:33:58ZengElsevierNuclear Engineering and Technology1738-57332014-10-0146566767410.5516/NET.04.2014.012KTM TOKAMAK OPERATION SCENARIOS SOFTWARE INFRASTRUCTUREV PAVLOV0K. BAYSTRUKOV1YU. GOLOBOKOV2A. OVCHINNIKOV3A. MEZENTSEV4S. MERKULOV5A. LEE6I. TAZHIBAYEVA7G. SHAPOVALOV8National Research Tomsk Polytechnic University (TPU) 634050, Russian Federation, Tomsk, Lenin Avenue, 30National Research Tomsk Polytechnic University (TPU) 634050, Russian Federation, Tomsk, Lenin Avenue, 30National Research Tomsk Polytechnic University (TPU) 634050, Russian Federation, Tomsk, Lenin Avenue, 30National Research Tomsk Polytechnic University (TPU) 634050, Russian Federation, Tomsk, Lenin Avenue, 30National Research Tomsk Polytechnic University (TPU) 634050, Russian Federation, Tomsk, Lenin Avenue, 30National Research Tomsk Polytechnic University (TPU) 634050, Russian Federation, Tomsk, Lenin Avenue, 30National Research Tomsk Polytechnic University (TPU) 634050, Russian Federation, Tomsk, Lenin Avenue, 30National Nuclear Center (NNC), 071100, Kazakhstan, Kurchatov, st.Krasnoarmeyskaya, 2 buil.54 BNational Nuclear Center (NNC), 071100, Kazakhstan, Kurchatov, st.Krasnoarmeyskaya, 2 buil.54 BOne of the largest problems for tokamak devices such as Kazakhstan Tokamak for Material Testing (KTM) is the operation scenarios' development and execution. Operation scenarios may be varied often, so a convenient hardware and software solution is required for scenario management and execution. Dozens of diagnostic and control subsystems with numerous configuration settings may be used in an experiment, so it is required to automate the subsystem configuration process to coordinate changes of the related settings and to prevent errors. Most of the diagnostic and control subsystems software at KTM was unified using an extra software layer, describing the hardware abstraction interface. The experiment sequence was described using a command language. The whole infrastructure was brought together by a universal communication protocol supporting various media, including Ethernet and serial links. The operation sequence execution infrastructure was used at KTM to carry out plasma experiments.http://www.sciencedirect.com/science/article/pii/S1738573315301066TokamakKTMAutomatic ControlEmbedded SoftwareExperiment Scenario Description Language
spellingShingle V PAVLOV
K. BAYSTRUKOV
YU. GOLOBOKOV
A. OVCHINNIKOV
A. MEZENTSEV
S. MERKULOV
A. LEE
I. TAZHIBAYEVA
G. SHAPOVALOV
KTM TOKAMAK OPERATION SCENARIOS SOFTWARE INFRASTRUCTURE
Nuclear Engineering and Technology
Tokamak
KTM
Automatic Control
Embedded Software
Experiment Scenario Description Language
title KTM TOKAMAK OPERATION SCENARIOS SOFTWARE INFRASTRUCTURE
title_full KTM TOKAMAK OPERATION SCENARIOS SOFTWARE INFRASTRUCTURE
title_fullStr KTM TOKAMAK OPERATION SCENARIOS SOFTWARE INFRASTRUCTURE
title_full_unstemmed KTM TOKAMAK OPERATION SCENARIOS SOFTWARE INFRASTRUCTURE
title_short KTM TOKAMAK OPERATION SCENARIOS SOFTWARE INFRASTRUCTURE
title_sort ktm tokamak operation scenarios software infrastructure
topic Tokamak
KTM
Automatic Control
Embedded Software
Experiment Scenario Description Language
url http://www.sciencedirect.com/science/article/pii/S1738573315301066
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