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Development of Supervisory Control System for Magnet Power Supplies in JT-60SA

https://repo.qst.go.jp/records/72985
https://repo.qst.go.jp/records/72985
3ebacc78-aa49-4521-a0fa-e019a1ad651d
Item type 会議発表用資料 / Presentation(1)
公開日 2018-10-25
タイトル
タイトル Development of Supervisory Control System for Magnet Power Supplies in JT-60SA
言語
言語 eng
資源タイプ
資源タイプ識別子 http://purl.org/coar/resource_type/c_c94f
資源タイプ conference object
アクセス権
アクセス権 metadata only access
アクセス権URI http://purl.org/coar/access_right/c_14cb
著者 Hatakeyama, Shoichi

× Hatakeyama, Shoichi

WEKO 798134

Hatakeyama, Shoichi

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Shimada, Katsuhiro

× Shimada, Katsuhiro

WEKO 798135

Shimada, Katsuhiro

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Yamauchi, Kunihito

× Yamauchi, Kunihito

WEKO 798136

Yamauchi, Kunihito

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Matsukawa, Makoto

× Matsukawa, Makoto

WEKO 798137

Matsukawa, Makoto

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Moriyama, Shinichi

× Moriyama, Shinichi

WEKO 798138

Moriyama, Shinichi

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Baulaigue, Olivier

× Baulaigue, Olivier

WEKO 798139

Baulaigue, Olivier

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Gaio, Elena

× Gaio, Elena

WEKO 798140

Gaio, Elena

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Maistrello, Alberto

× Maistrello, Alberto

WEKO 798141

Maistrello, Alberto

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Ferro, Alberto

× Ferro, Alberto

WEKO 798142

Ferro, Alberto

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Novello, Luca

× Novello, Luca

WEKO 798143

Novello, Luca

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Frello, Giampaolo

× Frello, Giampaolo

WEKO 798144

Frello, Giampaolo

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Lampasi, Alessandro

× Lampasi, Alessandro

WEKO 798145

Lampasi, Alessandro

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Zito, Pietro

× Zito, Pietro

WEKO 798146

Zito, Pietro

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Hatakeyama, Shoichi

× Hatakeyama, Shoichi

WEKO 798147

en Hatakeyama, Shoichi

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Shimada, Katsuhiro

× Shimada, Katsuhiro

WEKO 798148

en Shimada, Katsuhiro

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Yamauchi, Kunihito

× Yamauchi, Kunihito

WEKO 798149

en Yamauchi, Kunihito

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Matsukawa, Makoto

× Matsukawa, Makoto

WEKO 798150

en Matsukawa, Makoto

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Moriyama, Shinichi

× Moriyama, Shinichi

WEKO 798151

en Moriyama, Shinichi

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抄録
内容記述タイプ Abstract
内容記述 Magnet power supply (PS) system of JT-60SA is being implemented within the Broader Approach Agreement aiming to achieve first plasma in 2020. The system consists of several components such as DC power supply, switching network unit, quench protection circuit and motor-generator. All the components
have their own internal controller (LCC) for stand-alone operation so the individual commissioning are in progress and almost completed. The next step scheduled is a combination test with all components in which supervisory control system manage LCCs remotely. The supervisory system covers the following roles: 1) machine status monitoring; 2) discharge sequence management; 3) real-time reference waveforms management; 4) data acquisition; 5) machine protection; 6) human safety. The supervisory system consists of several subsystems; PS supervising computer (PS-SC), PS programmable logic controller (PS-PLC), PS internal protection
system(PS-IPS) and PS safety interlock system (PS-SIS). PS-SC covers the primary roles in 1) – 4) which is built on CompactPCIs with real-time OS INtime. PS-SC and LCCs are linked through a Reflective Memory (RM) network to share common data in real-time (4 kHz). PS-SC is also linked to the upstream JT-60SA supervisory control system (SCSDAS) via another RM network as an interface for the power supply internal control systems. During discharge sequence, PS-SC also manages motor-generator speed, AC circuit breakers OPEN/CLOSE status with a controller PS-PLC and magnets current according to request from SCSDAS. PS-IPS covers the function of 5) which is implemented on FPGA. PS-IPS is connected to LCCs via fiber optical and hard-wired signals. In case of emergency events such as magnet quench and earth quake, PS-IPS commands to shut down the magnets currents immediately. PS-SIS plays the role in 6) such as status and permission of fence OPEN/CLOSE and grounding switch for maintenance. In this presentation, overview and development of the supervisory system are described.
会議概要(会議名, 開催地, 会期, 主催者等)
内容記述タイプ Other
内容記述 30th edition of the Symposium on Fusion Technology (SOFT 2018)
発表年月日
日付 2018-09-20
日付タイプ Issued
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