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Nuclear Engineering and Technology | 2008

OVERVIEW OF KSTAR INTEGRATED CONTROL SYSTEM

Mikyung Park; Kukhee Kim; Taegu Lee; Myungkyu Kim; Jaesic Hong; Sulhee Baek; Sang-Il Lee; Jinseop Park; Y. Chu; Y.S. Kim; S.H. Hahn; Yeong-Kook Oh; J.S. Bak

After more than 10 years construction, KSTAR (Korea Superconducting Tokamak Advanced Research) had finally completed its assembly in June 2007, and then achieved the goal of first-plasma in July 2008 through the four months commissioning. KSTAR was constructed with fully superconducting magnets with material of and NbTi, and their operation temperatures are maintained below 4.5K by the help of Helium Refrigerator System. During the first-plasma operation, plasmas of maximum current of 133kA and maximum pulse width of 865ms were obtained. The KSTAR Integrated Control System (KICS) has successfully fulfilled its missions of surveillance, device operation, machine protection interlock, and data acquisition and management. These and more were all KSTAR commissioning requirements. For reliable and safe operation of KSTAR, 17 local control systems were developed. Those systems must be integrated into the logically single control system, and operate regardless of their platforms and location installed. In order to meet these requirements, KICS was developed as a network-based distributed system and adopted a new framework, named as EPICS (Experimental Physics and Industrial Control System). Also, KICS has some features in KSTAR operation. It performs not only 24 hour continuous plant operation, but the shot-based real-time feedback control by exchanging the initiatives of operation between a central controller and a plasma control system in accordance with the operation sequence. For the diagnosis and analysis of plasma, 11 types of diagnostic system were implemented in KSTAR, and the acquired data from them were archived using MDSpius (Model Driven System), which is widely used in data management of fusion control systems. This paper will cover the design and implementation of the KSTAR integrated control system and the data management and visualization systems. Commissioning results will be introduced in brief.


Fusion Engineering and Design | 2014

Design and implementation of a standard framework for KSTAR control system

Woongryol Lee; Mikyung Park; Taegu Lee; Sang-Il Lee; Sangwon Yun; Jinseop Park; Kaprai Park


Fusion Engineering and Design | 2006

Development of a prototype time synchronization system for KSTAR with a VME–bus system

Mikyung Park; Kwang-Won Kim; M.C. Kyum; Myeun Kwon


symposium on fusion technology | 2009

Development and commissioning results of the KSTAR discharge control system

Kukhee Kim; Mikyung Park; S.H. Hahn; Myungkyu Kim; Jaesic Hong; Sulhee Baek; Taegu Lee; Sang-Il Lee; Jinseop Park; Jae-Hoon Choi; Jayhyun Kim; Hyun-Sik Ahn; Kap-Rae Park; Yeong-Kook Oh


Fusion Engineering and Design | 2013

Evaluating performance of MARTe as a real-time framework for feed-back control system at tokamak device

Sangwon Yun; Woongryol Lee; Taegu Lee; Mikyung Park; Sang-Il Lee; A. Neto; Anders Wallander; Young-Kuk Kim


Fusion Engineering and Design | 2012

The upgrade of KSTAR timing system to support long-pulse operation and high-speed data acquisition

Mikyung Park; Woongryol Lee; Hoonkyun Na


Fusion Engineering and Design | 2010

Data acquisition system implemented with various platforms for KSTAR diagnostic systems

Mikyung Park; Taegu Lee; Woongryol Lee; Hirofumi Yonekawa; Sulhee Baek; Jaesic Hong; Yeong-Kook Oh; Jongha Lee; Hoonkyun Na; Myeun Kwon


Fusion Engineering and Design | 2015

Maturity assessment of ITER diagnostics plant instrumentation and control design

S. Simrock; Lana Abadie; R. Barnsley; Bertrand Bauvir; L. Bertalot; P. Makijarvi; Mikyung Park; R. Reichle; Denis Stepanov; G. Vayakis; Anders Wallander; M. Walsh; A. Winter; I. Yonekawa; Zhao Li; Tsuyoshi Yamamoto; Sanjeev Varshney; Jihyun Choi; Ekaterina Mironov; A. Neto; Bill DeVan; Eva Freer; Prabhakant Patil; Manojkumar Annigeri; Grzegorz Jablonski; Dariusz Makowski; Aleksander Mielczarek; Piotr Perek; Mariusz Orlikowski; Matjaz Bercic


Fusion Engineering and Design | 2011

Development of the EPICS-based data acquisition system for Thomson scattering diagnostic

Woongryol Lee; Mikyung Park; Jongha Lee; Sulhee Baek; Taegu Lee; Sang-Il Lee; Hanmin Wi; Sungtae Oh; Hoonkyun Na; Hyungshin Kim


Fusion Engineering and Design | 2014

A shared memory based interface of MARTe with EPICS for real-time applications

Sangwon Yun; A. Neto; Mikyung Park; Sang-Il Lee; Kaprai Park

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Myeun Kwon

Pohang University of Science and Technology

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Hyungshin Kim

Chungnam National University

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A. Neto

Instituto Superior Técnico

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