Load Resilient Transmission Line System for Long-Pulse, High-Power ICRF Operation at KSTAR

被引:1
|
作者
Kim, H. J. [1 ]
Wang, S. J. [1 ]
Bae, Y. S. [1 ]
Yang, H. L. [1 ]
Kwak, J. G. [1 ]
Kim, S. H. [2 ]
Park, M. [2 ]
机构
[1] Natl Fus Res Inst, Taejon 305333, South Korea
[2] Korea Atom Energy Res Inst, Taejon 305353, South Korea
来源
关键词
KSTAR; ICRF; Load resilient; vacuum feedthrough; breakdown; CURRENT DRIVE; PLASMAS;
D O I
10.1063/1.4864542
中图分类号
O59 [应用物理学];
学科分类号
摘要
We have newly designed, fabricated, and installed a decoupler and a 3 dB hybrid coupler for load-resilient operation of the KSTAR ICRF. The new ICRF TL system for load resilient operation has been successfully performed in 2012 plasma experiments. In L-mode plasmas, the ratio between two powers measured at the isolated port of the hybrid coupler and reflected from two resonant loops becomes approximately 1. Furthermore, a load resilient transmission line (TL) system results in stable ICRF transmitter operation and power transmission in ELMy discharges. The maximum ICRF transmitted power is approximately 500 kW and pulse length is 3 s. With power transmission at higher than 500 kW, breakdowns frequently occurred in the vacuum feedthrough. After the campaign, we discovered that surfaces of alumina, coaxial inner and outer conductor of the vacuum feedthrough were severely damaged by the arcs. We removed the silver coat from 8 feedthroughs and repaired the damaged surfaces. In order to study a higher standoff capability, we tested the repaired feedthroughs in the vacuum chamber with a high power RF test stand.
引用
收藏
页码:279 / 282
页数:4
相关论文
共 50 条
  • [31] RF test of the ICRF antenna for long pulse and high power operation
    Bae, YD
    Kwak, JG
    Yoon, JS
    Jeong, SU
    Hong, BG
    FUSION SCIENCE AND TECHNOLOGY, 2003, 43 (1T) : 83 - 85
  • [32] Optimal Design of Electronic Bouncers for Long-Pulse High-Power Modulators
    Collins, Max
    Martins, Carlos A.
    IEEE TRANSACTIONS ON PLASMA SCIENCE, 2021, 49 (02) : 819 - 829
  • [33] PHASE-LOCKING OF 2 LONG-PULSE, HIGH-POWER MAGNETRONS
    TREADO, TA
    BROWN, PD
    HANSEN, TA
    AIGUIER, DJ
    IEEE TRANSACTIONS ON PLASMA SCIENCE, 1994, 22 (05) : 616 - 625
  • [34] LONG-PULSE APPLICATIONS OF PULSE-FORMING LINES FOR HIGH-POWER LINAC APPLICATION
    HOEBERLING, RF
    TALLERICO, PJ
    IEEE TRANSACTIONS ON NUCLEAR SCIENCE, 1981, 28 (03) : 2958 - 2960
  • [35] A three-electrode discharge system for long-pulse high-power KrCl excimer lasers
    Casper, LC
    Bastiaens, HMJ
    Peters, PJM
    Boller, KJ
    Hofstra, RM
    XV International Symposium on Gas Flow, Chemical Lasers, and High-Power Lasers Pt 1 and 2, 2005, 5777 : 554 - 557
  • [36] Test and operation of high-power RF system for KSTAR helicon current drive system
    Kim, Jeehyun
    Wang, Sonjong
    Jang, Kwangho
    Lee, Hyunyeong
    Wi, Hyunho
    FUSION ENGINEERING AND DESIGN, 2021, 166
  • [37] High power density and long pulse operation with Tore Supra ICRF facility
    Brémond, S
    Agarici, G
    Beaumont, B
    Lombard, G
    Millon, L
    Mollard, P
    Volpe, D
    Vulliez, K
    Bécoulet, A
    Colas, L
    Saoutic, B
    FUSION ENGINEERING AND DESIGN, 2003, 66-68 : 453 - 460
  • [38] Demonstration of a high-power long-pulse 140-GHz gyrotron oscillator
    Blank, M
    Felch, K
    Borchard, P
    Cahalan, P
    Cauffman, SR
    Chu, TS
    Jory, H
    IEEE TRANSACTIONS ON PLASMA SCIENCE, 2004, 32 (03) : 867 - 876
  • [39] A Resilient power System Operation Strategy Considering Transmission Line Attacks
    Lai, Kexing
    Wang, Yishen
    Shi, Di
    Illindala, Mahesh S.
    Zhang, Xiaohu
    Wang, Zhiwei
    IEEE ACCESS, 2018, 6 : 70633 - 70643
  • [40] Development of high power long-pulse RF transmitter for ICRF heating in fusion researches and cyclotron accelerator
    Kwak, J. G.
    Wang, S. J.
    Bae, Y. D.
    Kim, S. H.
    Hwang, C. K.
    Moriyama, S.
    FUSION ENGINEERING AND DESIGN, 2011, 86 (6-8) : 938 - 941