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Development of ITER-relevant plasma control solutions at DIII-D

Authors :
B.G. Penaflor
M.L. Walker
J.A. Leuer
Hogun Jhang
D.G. Whyte
J. A. Blair
Mohammad Reza Bakhtiari
D.A. Humphreys
J.S. Kim
Robert D. Johnson
Eugenio Schuster
G.L. Jackson
J.R. Ferron
Yongkyoon In
A.S. Welander
R.J. LaHaye
Huiqian Wang
Source :
Nuclear Fusion. 47:943-951
Publication Year :
2007
Publisher :
IOP Publishing, 2007.

Abstract

The requirements of the DIII-D physics program have led to the development of many operational control results with direct relevance to ITER. These include new algorithms for robust and sustained stabilization of neoclassical tearing modes with electron cyclotron current drive, model-based controllers for stabilization of the resistive wall mode in the presence of ELMs, coupled linear–nonlinear algorithms to provide good dynamic axisymmetric control while avoiding coil current limits, and adaptation of the DIII-D plasma control system (PCS) to operate next-generation superconducting tokamaks. Development of integrated plasma control (IPC), a systematic approach to modelbased design and controller verification, has enabled successful experimental application of high reliability control algorithms requiring a minimum of machine operations time for testing and tuning. The DIII-D PCS hardware and software and its versions adapted for other devices can be connected to IPC simulations to confirm control function prior to experimental use. This capability has been important in control system implementation for tokamaks under construction and is expected to be critical for ITER.

Details

ISSN :
17414326 and 00295515
Volume :
47
Database :
OpenAIRE
Journal :
Nuclear Fusion
Accession number :
edsair.doi...........a3f733015357edabd5cc66432bb12629
Full Text :
https://doi.org/10.1088/0029-5515/47/8/028