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Overview of the KSTAR experiments toward fusion reactor

Overview of the KSTAR experiments toward fusion reactor

The Korean Superconducting Tokamak Advanced Research has been focused on exploring the key physics and engineering issues for future fusion reactors by demonstrating the long pulse operation of high beta steady-state discharge. Advanced scenarios are being developed with the goal for steady-state op...

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Bibliographic Details
Main Authors: Won-Ha Ko, S.W. Yoon, W.C. Kim, J.G. Kwak, K.L. Park, Y.U. Nam, S.J. Wang, J. Chung, B.H. Park, G.Y. Park, H.H. Lee, H.S. Han, M.J. Choi, Y.S. Na, Y. In, C.Y. Lee, M. Kim, G.S. Yun, Y.-C. Ghim, W.H. Choe, J.M. Kwon, J.P. Lee, W.C. Lee, Y.M. Jeon, K. Kim, J.H. Lee, G.W. Shin, J. Kim, J. Lee, S.H. Hahn, J.W. Lee, H.S. Kim, J.G. Bak, S.G. Lee, Y.H. Lee, J.H. Jeong, M.H. Woo, J.H. Kim, J.W. Juhn, J.S. Ko, C. Sung, H.W. Shin, J.M. Park, S.K. Kim, J.K. Park, N.C. Logan, S.M. Yang, E. Kolemen, Q.M. Hu, R. Shousha, J. Barr, C. Paz-Soldan, Y.S. Park, S.A. Sabbagh, K. Ida, S. Kim, A. Loarte, E. Gilson, D. Eldon, T. Nakano, T. Tala, KSTAR Team
Format: Article
Language:English
Published: IOP Publishing 2024-01-01
Series:Nuclear Fusion
Subjects:
FIRE-mode
machine learning (ML) control algorithm
long ELM-suppression
tungsten divertor
virtual KSTAR
high beta long pulse
Online Access:https://doi.org/10.1088/1741-4326/ad3b1d
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Internet

https://doi.org/10.1088/1741-4326/ad3b1d

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