KSTAR Overview
ORAL
Abstract
Symmetric multiple Shattered Pellet Injections (SPIs) for ITER disruption mitigation operation uniquely demonstrated for its performance in KSTAR. The real time DECAF (Disruption Event Characterization and Forecasting) validated the real time disruption event characterization and forecasting events on KSTAR.
In recent KSTAR 3D magnetic field experiments, ELM optimization and automatic control techniques such as adapted ELM controller [1] and Machine Learning algorithm [2] in order to suppress ELM successfully implemented in KSTAR PCS. Machine learning algorithm successfully suppressed nearly complete ELM-crash with the first ELM. Machine learning, adaptive ELM controller and ERMPs applied to RMP-driven ELM suppression experiments with long pulses for ITER operation.
To enhance understanding of the fundamental processes, the KSTAR research also focused on interaction of island and turbulence in pedestal with complexity-enthropy and the dynamics of turbulence based on broadband ECE diagnostics.
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Publication: [1] J. Kim et al, Nucl. Fusion 62 (2022) 026029<br>[2] S. K. Kim et al, Nucl. Fusion 62 (2022) 026043<br>[3] Giwook Shin et al, Nucl. Fusion 62 (2022) 026035
Presenters
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Won-Ha Ko
Korea Institute of Fusion Energy, KFE, Natl Fusion Res Inst, Korea Institute of Fusion Energy, Korea
Authors
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Won-Ha Ko
Korea Institute of Fusion Energy, KFE, Natl Fusion Res Inst, Korea Institute of Fusion Energy, Korea
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Si-Woo Yoon
Korea Institute of Fusion Energy, KFE, Korea Institute of Fusion Energy, Korea
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Woong Chae Kim
KFE, Korea Institute of Fusion Energy, Korea, Korea Institute of Fusion Energy
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J.G. Kwak
Korea Institute of Fusion Energy
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K.R. Park
Korea Institute of Fusion Energy
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Y.U. Nam
Korea Institute of Fusion Energy
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S.J. Wang
Korea Institute of Fusion Energy
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J. Chung
Korea Institute of Fusion Energy, Korea Institute of Fusion Energy, Korea
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B.H. Park
Korea Institute of Fusion Energy
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Gunyoung Park
Korea Institute of Fusion Energy, KFE
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Hyungho Lee
Korea Institute of Fusion Energy, Korea institute of Fusion Energy
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Hyunsun Han
Korea Institute of Fusion Energy, KFE, Korea Institute of Fusion Energy, Korea
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W.C. Lee
Korea Institute of Fusion Energy
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Y.S. Na
Seoul National University, Seoul National University, Korea
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G.S. Yun
POSTECH
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Y. In
Ulsan Natl Inst of Sci & Tech, UNIST
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Y.C. Ghim
Korea Advanced Institute of Science and Technology, Korea, KAIST, Korea Advanced Institute of Science and Technology
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J.P. Lee
Hanyang Univeristy, Hanyang University, Hanyang University, Korea
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J.M. Kwon
Korea Institute of Fusion Energy
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Jeongwon Lee
Korea Institute of Fusion Energy, KFE
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Y.M. Jeon
Korea Institute of Fusion Energy
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J. Kim
Korea Institute of Fusion Energy, Korea, Korea Institute of Fusion Energy
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Giwook Shin
Korea institute of Fusion Energy, Korea Institute of Fusion Energy, KFE
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M. J. Choi
KFE, Korea Institute of Fusion Energy, Korea Institute of Fusion Energy, Korea
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Jin Myung Park
Oak Ridge National Laboratory, ORNL
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SangKyeun Kim
Princeton University, Princeton University, U.S.A., PPPL, PU
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June-woo W Juhn
Korea Institute of Fusion Energy, Korea, Korea Institute of Fusion Energy, KFE
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Y.H. Lee
Korea Institute of Fusion Energy, Korea Institute of Fusion Energy, Korea
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Jayhyun Kim
Korea Institute of Fusion Energy, KFE
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K. Kim
Korea Institute of Fusion Energy
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Minwoo Kim
Korea Institute of Fusion Energy, KFE, Korean Intitute of Fusion Energy
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J.H. Hwang
KAIST
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Haewon Shin
Korea Advanced Institute of Science and Technology, KAIST
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J.K. Lee
Korea Institute of Fusion Energy, Korea, Korea Institute of Fusion Energy
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J.H. Lee
Korea Institute of Fusion Energy, Korea Institute of Fusion Energy, Korea
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J. Seol
Korea Institute of Fusion Energy
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Jun Gyo Bak
Korea Institute of Fusion Energy, Korea institute of Fusion Energy, KFE, Korea Institute of Fusion Energy, Korea
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H.S. Kim
Korea Institute of Fusion Energy
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S. G. Lee
Korea Institute of Fusion Energy
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Jinseok Ko
Korea Institute of Fusion Energy, KFE, Korea Institute of Fusion Energy, Korea
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Sanghee Hahn
Korea Institute of Fusion Energy, Korea institute of Fusion Energy, Korea Institute of Fusion Energy, Korea, KFE
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S.C. Hong
Korea Institute of Fusion Energy
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H.Y. Lee
Korea Institute of Fusion Energy
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S.I. Lee
Korea Institute of Fusion Energy
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Jae-wook Kim
Korea institute of Fusion Energy, Korea Institute of Fusion Energy, KFE
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Jong-Kyu Park
Princeton Plasma Physics Laboratory, Princeton Plasma Physics Laboratory, U.S.A., PPPL
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Nikolas C Logan
Lawrence Livermore Natl Lab, LLNL
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SeongMoo Yang
Princeton Plasma Physics Laboratory, Princeton Plasma Physics Laboratory, U.S.A., PPPL
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E. Kolemen
PPPL
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Jayson L Barr
General Atomics - San Diego, General Atomics
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Young-Seok Park
Columbia University, Columbia U., Columbia University, U.S.A., Columbia Uni., Columbia Univ
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Steven A Sabbagh
Columbia University, Columbia U., Columbia Uni.
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K. Ida
Natl Inst Fusion Science-Toki, NIFS
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S. Kim
ITER Organization
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Eugenio Schuster
Lehigh University, Lehigh Univ., Lehigh university
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E. Gilson
General Atomics - San Diego, General Atomics
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Erik P Gilson
General Atomics, Princeton Plasma Physics Laboratory
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T. Tala
VTT TRC, Finland
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B.S. Kim
Seoul National University, Korea, Seoul National University
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H.J. Lee
Hanyang University
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D.K. Kim
POSTECH
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J.M. Seo
Seoul National University, Korea, Seoul National University
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Yoon Seong Han
Korea Advanced Institute of Science and Technology, KAIST
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Won-Ha Ko
Korea Institute of Fusion Energy, KFE, Natl Fusion Res Inst, Korea Institute of Fusion Energy, Korea