Implementing a finite-state off-normal and fault response system for disruption avoidance in tokamaks

被引:27
作者
Eidietis, N. W. [1 ]
Choi, W. [2 ]
Hahn, S. H. [3 ]
Humphreys, D. A. [1 ]
Sammuli, B. S. [1 ]
Walker, M. L. [1 ]
机构
[1] Gen Atom, POB 85608, San Diego, CA 92186 USA
[2] Columbia Univ, New York, NY 10027 USA
[3] Natl Fus Res Inst, Daejon, South Korea
关键词
disruption avoidance; integrated control; fault response; ITER; PROGRESS; LIMITS;
D O I
10.1088/1741-4326/aab62c
中图分类号
O35 [流体力学]; O53 [等离子体物理学];
学科分类号
070204 ; 080103 ; 080704 ;
摘要
A finite-state off-normal and fault response (ONFR) system is presented that provides the supervisory logic for comprehensive disruption avoidance and machine protection in tokamaks. Robust event handling is critical for ITER and future large tokamaks, where plasma parameters will necessarily approach stability limits and many systems will operate near their engineering limits. Events can be classified as off-normal plasmas events, e.g. neoclassical tearing modes or vertical displacements events, or faults, e.g. coil power supply failures. The ONFR system presented provides four critical features of a robust event handling system: sequential responses to cascading events, event recovery, simultaneous handling of multiple events and actuator prioritization. The finite-state logic is implemented in Matlab (R)/Stateflow (R) to allow rapid development and testing in an easily understood graphical format before automated export to the real-time plasma control system code. Experimental demonstrations of the ONFR algorithm on the DIII-D and KSTAR tokamaks are presented. In the most complex demonstration, the ONFR algorithm asynchronously applies 'catch and subdue' electron cyclotron current drive (ECCD) injection scheme to suppress a virulent 2/1 neoclassical tearing mode, subsequently shuts down ECCD for machine protection when the plasma becomes over-dense, and enables rotating 3D field entrainment of the ensuing locked mode to allow a safe rampdown, all in the same discharge without user intervention. When multiple ONFR states are active simultaneously and requesting the same actuator (e.g. neutral beam injection or gyrotrons), actuator prioritization is accomplished by sorting the preassigned priority values of each active ONFR state and giving complete control of the actuator to the state with highest priority. This early experience makes evident that additional research is required to develop an improved actuator sharing protocol, as well as a methodology to minimize the number and topological complexity of states as the finite-state ONFR system is scaled to a large, highly constrained device like ITER.
引用
收藏
页数:9
相关论文
共 27 条
[1]  
[Anonymous], 2014, MATLAB REL 2012A
[2]   Feedforward and feedback control of locked mode phase and rotation in DIII-D with application to modulated ECCD experiments [J].
Choi, W. ;
La Haye, R. J. ;
Lanctot, M. J. ;
Olofsson, K. E. J. ;
Strait, E. J. ;
Sweeney, R. ;
Volpe, F. A. .
NUCLEAR FUSION, 2018, 58 (03)
[3]  
Felici F., 2016, 2016 IAEA INT C FUS
[4]   Real time equilibrium reconstruction for tokamak discharge control [J].
Ferron, JR ;
Walker, ML ;
Lag, LL ;
St John, HE ;
Humphreys, DA ;
Leuer, JA .
NUCLEAR FUSION, 1998, 38 (07) :1055-1066
[5]   INTERACTION OF TEARING MODES WITH EXTERNAL STRUCTURES IN CYLINDRICAL GEOMETRY [J].
FITZPATRICK, R .
NUCLEAR FUSION, 1993, 33 (07) :1049-1084
[6]   Plasma shape control on the National Spherical Torus Experiment (NSTX) using real-time equilibrium reconstruction [J].
Gates, DA ;
Ferron, JR ;
Bell, M ;
Gibney, T ;
Johnson, R ;
Marsala, RJ ;
Mastrovito, D ;
Menard, JE ;
Mueller, D ;
Penaflor, B ;
Sabbagh, SA ;
Stevenson, T .
NUCLEAR FUSION, 2006, 46 (01) :17-23
[7]   A NEW LOOK AT DENSITY LIMITS IN TOKAMAKS [J].
GREENWALD, M ;
TERRY, JL ;
WOLFE, SM ;
EJIMA, S ;
BELL, MG ;
KAYE, SM ;
NEILSON, GH .
NUCLEAR FUSION, 1988, 28 (12) :2199-2207
[8]   Progress and plan of KSTAR plasma control system upgrade [J].
Hahn, Sang-hee ;
Kim, Y. J. ;
Penaflor, B. G. ;
Bak, J. G. ;
Han, H. ;
Hong, J. S. ;
Jeon, Y. M. ;
Jeong, J. H. ;
Joung, M. ;
Juhn, J. W. ;
Kim, J. S. ;
Kim, H. S. ;
Lee, W. R. ;
Woo, M. H. ;
Eidietis, N. W. ;
Ferron, J. R. ;
Humphreys, D. A. ;
Hyatt, A. ;
Johnson, R. D. ;
Piglowski, D. A. ;
Walker, M. L. ;
Welander, A. S. ;
Mueller, D. ;
Milne, P. G. .
FUSION ENGINEERING AND DESIGN, 2016, 112 :687-691
[9]   DIII-D Integrated plasma control solutions for ITER and next-generation tokamaks [J].
Humphreys, D. A. ;
Ferron, J. R. ;
Hyatt, A. W. ;
La Haye, R. J. ;
Leuer, J. A. ;
Penaflor, B. G. ;
Walker, M. L. ;
Welander, A. S. ;
In, Y. .
FUSION ENGINEERING AND DESIGN, 2008, 83 (2-3) :193-197
[10]   Extremely low intrinsic non-axisymmetric field in KSTAR and its implications [J].
In, Y. ;
Park, J. K. ;
Jeon, J. M. ;
Kim, J. ;
Okabayashi, M. .
NUCLEAR FUSION, 2015, 55 (04)