KSTAR托卡马克等离子体形状控制系统设计

S. Hahn, J.H. Choi, J.K. Jin, Y. Jeon, S. Yoon, J. Kim, Y. Bae, M. Park, K.R. Park, Y.S. Kim, H. Yang, W. Kim, Y. Oh, M. Kwon, M. Walker, D. Humphreys, B. Penaflor, D. Piglowski, R. Johnson, A. Welander, J. Leuer, N. Eidietis, A. Hyatt, G. Jackson, D. Mueller
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引用次数: 2

摘要

韩国超导托卡马克和高级研究(KSTAR)的等离子体形状控制系统的发展继续从第一次利用等离子体电流/主要半径到计划在2009/2010年全面利用极向超导磁体和用于高度拉长(κ ~ 2.0)等离子体的容器内稳定线圈。本文将KSTAR的形状控制作为一个完整的整体形式进行分析,包括操作设计和经验。在2008年举行的第一次等离子体运动中,等离子体形状控制系统已准备好作为第一次日常操作的脉冲操作控制的一部分。全数字集中化方案通过EPICS通信层和专用快速通信层实现了时间同步拍摄序列监控和执行器集成。最后完成了一个可靠的实时等离子体反馈系统,用于制造/维持等离子体电流和主半径。介绍了未来几年形状控制升级的现状,以及执行器控制的发展和新引入的船内垂直稳定控制方案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design of plasma shape control system for KSTAR tokamak
The development of the plasma shape control system of the Korea Superconducting Tokamak and Advanced Research (KSTAR) continues from the first utilization for plasma current/ major radii to the full-scale utilizations of the poloidal superconducting magnets and the in-vessel stabilization coils for the highly elongated (κ ∼ 2.0) plasmas planned in 2009/2010. In this paper the shape control of KSTAR is analyzed as a complete integrated form, including the operation design and experiences. In the first plasma campaign held in 2008, the plasma shape control system has been prepared as part of the pulse operation controls for the first daily operation. A time-synchronized shot sequence supervisions and actuator integrations has been done by the full-digital centralization scheme via the EPICS communicating layers and the dedicated fast communication layers. In the end a reliable real-time plasma feedback system have been accomplished for making/sustaining plasma current and major radius. The status of the shape control upgrade proposed for upcoming years is shown as well as the actuator control developments and the newly-introduced in-vessel vertical stabilization control scheme.
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