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논문 기본 정보

자료유형
학술저널
저자정보
Jae-Hoon Choi (National Fusion Research Institute) Dong-Keun Lee (National Fusion Research Institute) Chang-Hwan Kim (National Fusion Research Institute) Jong-kook Jin (National Fusion Research Institute) Sang-Hee Han (National Fusion Research Institute) Jong-Dae Kong (National Fusion Research Institute) Seong-Lok Hong (National Fusion Research Institute) Yang-Su Kim (National Fusion Research Institute) Myeun Kwon (National Fusion Research Institute) Hyun-Sik Ahn (POSCO ICT) Gye-Yong Jang (POSCO ICT) Min-Seong Yun (POSCO ICT) Dae-Kyung Seong (POSCO ICT) Hyun-Seok Shin (POSCO ICT)
저널정보
대한전기학회 Journal of Electrical Engineering & Technology Journal of Electrical Engineering & Technology Vol.8 No.2
발행연도
2013.3
수록면
326 - 330 (5page)

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초록· 키워드

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The Korea Superconducting Tokamak Advanced Research (KSTAR) device is an advanced superconducting tokamak to establish scientific and technological bases for attractive fusion reactor. This device requires 3.5 Tesla of toroidal field (TF) for plasma confinement, and requires a strong poloidal flux swing to generate an inductive voltage to produce and sustain the tokamak plasma. KSTAR was originally designed to have 16 serially connected TF magnets for which the nominal current rating is 35.2 kA. KSTAR also has 7 pairs of poloidal field (PF) coils that are driven to 1 MA/sec for generation of the tokamak plasma according to the operation scenarios. The KSTAR Magnet Power Supply (MPS) was dedicated to the superconducting (SC) coil commissioning and 2<SUP>nd</SUP> plasma experiment as a part of the system commissioning. This paper will describe key features of KSTAR MPS for the 2<SUP>nd</SUP> plasma experiment, and will also report the engineering and commissioning results of the magnet power supplies.

목차

Abstract
1. Introduction
2. TF MPS System
3. PF MPS System
4. Conclusion
Acknowledgements
References

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UCI(KEPA) : I410-ECN-0101-2014-560-000290246