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KE Xin (柯新), CHEN Zhipeng (陈志鹏), BA Weigang (巴为刚), SHU Shuangbao (舒双宝), GAO Li (高丽), ZHANG Ming (张明), ZHUANG Ge (庄革). The Construction of Plasma Density Feedback Control System on J-TEXT Tokamak[J]. Plasma Science and Technology, 2016, 18(2): 211-216. DOI: 10.1088/1009-0630/18/2/20
Citation: KE Xin (柯新), CHEN Zhipeng (陈志鹏), BA Weigang (巴为刚), SHU Shuangbao (舒双宝), GAO Li (高丽), ZHANG Ming (张明), ZHUANG Ge (庄革). The Construction of Plasma Density Feedback Control System on J-TEXT Tokamak[J]. Plasma Science and Technology, 2016, 18(2): 211-216. DOI: 10.1088/1009-0630/18/2/20

The Construction of Plasma Density Feedback Control System on J-TEXT Tokamak

Funds: supported by the National Magnetic Confinement Fusion Science Program (Nos. 2014GB103001 and 2013GB106001) and National Natural Science Foundation of China (Nos. 11305070 and 11105028)
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  • Received Date: February 09, 2015
  • The plasma density feedback control system (PDFCS) has been established on the Joint Texas Experimental Tokamak (J-TEXT) for meeting the need for an accurate plasma density in physical experiments. It consists of a density measurement subsystem, a feedback control subsystem and a gas puffing subsystem. According to the characteristic of the gas puffing system, a voltage amplitude control mode has been applied in the feedback control strategy, which is accomplished by the proportion, integral and differential (PID) controller. In this system, the quantity calibration of gas injection, adjusted responding to the change of the density signal, has been carried out. Some experimental results are shown and discussed.
  • 1 Strachan J D, Bretz N, Mazzucato E, et al. 1982, Nuclear Fusion, 22: 1145 2 Winter J. 1987, Journal of Vacuum Science & Technology A, 5: 2286 3 Mlynek A, Reich M, Giannone L, et al. 2011, Nuclear Fusion, 51: 043002 4 Brelen H E O. 1995, Fusion Science and Technology,27: 162 5 Lennholm M, Budd T, Feton R, et al. 2000, Fusion Engineering and Design, 48: 37 6 Luo J R, Ji Z S, Wang X M, et al. 2001, Nuclear Fusion and Plasma Physics, 21: 237 (in Chinese) 7 Zhao D Z, Luo J R, Li G, et al. 2004, Nuclear Science and Techniques, 15: 232 8 Zhuang G, Pan Y, Hu X W, et al. 2011, Nuclear Fusion, 51: 094020 9 Chen L, Liu Z, Zhu W, et al. 2003, Vacuum, 6: 34 (in Chinese) 10 Seo S H, Kim H T, Kim K P, et al. 2008, Review of Scientific Instruments, 79: 116103 11 Gao L, Zhuang G, Wang Z J, et al. 2012, Review of Scientific Instruments, 83: 10E303 12 Shu S B, Luo J R, Xue E B, et al. 2011, Journal of Donghua University, 28: 576 13 Yang Z J, Zhuang G, Hu X W, et al. 2009, Fusion Engineering and Design, 84: 2093
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