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Alternate mode for data acquisition and real-time monitoring system based on CAMAC system

机译:基于CAMAC系统的数据采集与实时监测系统的交替模式。

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摘要

Long discharges (about 250 s) have been achieved on HT-7 tokamak experiments in the Institute of Plasma Physics, Chinese Academy of Sciences (ASIPP). And in the next generation tokamaks like ITER (I. Yonekawa, Data acquisition and management requirement for ITER, Fusion Eng. Des. 43 (1999) 321), KSTAR (G.S. Lee, J. Kim, S.M. Hwang, C.S. Chang, M.H. Cho, K. Kim, et al, The design of the KSTAR tokamak, Fusion Eng. Des. 46 (1999) 405) and EAST (J.R. Luo, L. Zhu, H.Z. Wang, Z.S. Ji, F. Wang, Y. Shu, Towards steady-state operational design for the data and PF control systems of the HT-7U, Nucl. Fusion 43 (9) (2003) 862), the pulses will be about 1000 s. In such steady-state operation, we have to upgrade the CAMAC-based data acquisition system, with higher sampling rates and longer acquisition times. It is necessary to monitor the plasma parameters in real-time so that the operators can change the operational conditions during the discharge to maintain the plasma. A design of the system named alternant data acquisition and real-time monitoring system for steady-state tokamak operation based on CAMAC system has been setup in ASIPP. The application of this system has been demonstrated in the HT-7 and TRIAM-1M tokamaks during their 2004 experiment campaigns.
机译:在中国科学院等离子体物理研究所(ASIPP)的HT-7托卡马克实验中,已经实现了长放电(约250 s)。在下一代的托卡马克中,例如ITER(米川一世,ITER的数据采集和管理要求,Fusion Eng。Des。43(1999)321),KSTAR(李国GS,金正恩,黄宗宪,张长生,赵兆,K。Kim等人,KSTAR tokamak的设计,Fusion Eng。Des。46(1999)405)和EAST(JR Luo,L.Zhu,Wang HZ Wang,ZS Ji,F. Wang,Y. Shu,对于HT-7U的数据和PF控制系统的稳态操作设计,Nucl。Fusion 43(9)(2003)862),脉冲将约为1000 s。在这种稳态操作下,我们必须升级基于CAMAC的数据采集系统,以更高的采样率和更长的采集时间。必须实时监视等离子体参数,以便操作员可以在放电期间更改操作条件以维持等离子体。在ASIPP中建立了基于CAMAC系统的稳态托卡马克交替数据采集与实时监控系统的设计。 HT-7和TRIAM-1M托卡马克在2004年的实验活动中已证明了该系统的应用。

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