Implementation of remote participation at Tokamak device experiments

The paper describes the software implementation of remote participation at Tokamak device experiment, particularly hardware remote control and monitoring implementation. This is an alternative to the traditional implementations based on such software kits as MDS+ and PK IVK used at Russian and forei...

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Main Authors: A. A. Mezentsev, V. M. Pavlov, Yu. N. Golobokov, D. A. Evstifeev
Format: Article
Language:Russian
Published: Tomsk Polytechnic University 2019-05-01
Series:Известия Томского политехнического университета: Инжиниринг георесурсов
Subjects:
Online Access:http://izvestiya.tpu.ru/archive/article/view/1198
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author A. A. Mezentsev
V. M. Pavlov
Yu. N. Golobokov
D. A. Evstifeev
author_facet A. A. Mezentsev
V. M. Pavlov
Yu. N. Golobokov
D. A. Evstifeev
author_sort A. A. Mezentsev
collection DOAJ
description The paper describes the software implementation of remote participation at Tokamak device experiment, particularly hardware remote control and monitoring implementation. This is an alternative to the traditional implementations based on such software kits as MDS+ and PK IVK used at Russian and foreign Tokamak devices: T-10, T-15, JET, JT-60, FTU. Traditional implementations are outdated and require deep modification for effective usage at new devices, so the new implementation is rather actual. The implementation is based on the use of new unified communication protocol for Tokamak subsystems - T-ICS. The protocol takes into account the individual peculiarities of subsystem hardware platform and provides the means of message encryption required for communication using Ethernet-based networks. The comparison of traditional approaches and the described implementation was also described. The implementation of the approach proposed was shown using a TRACE MODE SCADA for the experiment automation system hardware control at one of the foreign Tokamak devices. The use of the new implementation combined with SCADA allows significant automation of the applications development, simplifies hardware control and monitoring command language. At the present the software implementation was tested on the models of the active foreign Tokamak subsystems and it is currently used for model subsystem control. Because of the high potential of the mechanism is going to be integrated into control system of modified T-15 Russian Tokamak.
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spelling doaj.art-0f6220e540394b6d8e3207da28cde1b82023-06-02T21:07:22ZrusTomsk Polytechnic UniversityИзвестия Томского политехнического университета: Инжиниринг георесурсов2500-10192413-18302019-05-013235Implementation of remote participation at Tokamak device experimentsA. A. MezentsevV. M. PavlovYu. N. GolobokovD. A. EvstifeevThe paper describes the software implementation of remote participation at Tokamak device experiment, particularly hardware remote control and monitoring implementation. This is an alternative to the traditional implementations based on such software kits as MDS+ and PK IVK used at Russian and foreign Tokamak devices: T-10, T-15, JET, JT-60, FTU. Traditional implementations are outdated and require deep modification for effective usage at new devices, so the new implementation is rather actual. The implementation is based on the use of new unified communication protocol for Tokamak subsystems - T-ICS. The protocol takes into account the individual peculiarities of subsystem hardware platform and provides the means of message encryption required for communication using Ethernet-based networks. The comparison of traditional approaches and the described implementation was also described. The implementation of the approach proposed was shown using a TRACE MODE SCADA for the experiment automation system hardware control at one of the foreign Tokamak devices. The use of the new implementation combined with SCADA allows significant automation of the applications development, simplifies hardware control and monitoring command language. At the present the software implementation was tested on the models of the active foreign Tokamak subsystems and it is currently used for model subsystem control. Because of the high potential of the mechanism is going to be integrated into control system of modified T-15 Russian Tokamak.http://izvestiya.tpu.ru/archive/article/view/1198remote participationautomatic control systemCAD-systemTRACE MODET-ICS protocol
spellingShingle A. A. Mezentsev
V. M. Pavlov
Yu. N. Golobokov
D. A. Evstifeev
Implementation of remote participation at Tokamak device experiments
Известия Томского политехнического университета: Инжиниринг георесурсов
remote participation
automatic control system
CAD-system
TRACE MODE
T-ICS protocol
title Implementation of remote participation at Tokamak device experiments
title_full Implementation of remote participation at Tokamak device experiments
title_fullStr Implementation of remote participation at Tokamak device experiments
title_full_unstemmed Implementation of remote participation at Tokamak device experiments
title_short Implementation of remote participation at Tokamak device experiments
title_sort implementation of remote participation at tokamak device experiments
topic remote participation
automatic control system
CAD-system
TRACE MODE
T-ICS protocol
url http://izvestiya.tpu.ru/archive/article/view/1198
work_keys_str_mv AT aamezentsev implementationofremoteparticipationattokamakdeviceexperiments
AT vmpavlov implementationofremoteparticipationattokamakdeviceexperiments
AT yungolobokov implementationofremoteparticipationattokamakdeviceexperiments
AT daevstifeev implementationofremoteparticipationattokamakdeviceexperiments