DocumentCode
574315
Title
Robust adaptive control of the sawtooth instability in nuclear fusion
Author
Bolder, J.J. ; Witvoet, G. ; de Baar, M.R. ; van de Wouw, N. ; Haring, M.A.M. ; Westerhof, E. ; Doelman, N.J. ; Steinbuch, Maarten
Author_Institution
Dept. of Mech. Eng., Eindhoven Univ. of Technol., Eindhoven, Netherlands
fYear
2012
fDate
27-29 June 2012
Firstpage
5023
Lastpage
5028
Abstract
The sawtooth instability is a repetitive phenomenon occurring in plasmas of tokamak nuclear fusion reactors. Experimental studies of these instabilities and the effect they have on the plasma (notably the drive of secondary instabilities and consequent performance reduction) for a wide variety of plasma conditions is an important line of study in nuclear fusion research. Variations in the plasma conditions have a significant influence on the dynamical behavior of the sawtooth instability. Therefore, this paper presents the design of a sawtooth period controller which is robust against such variations. The controller is from a class of adaptive controllers better known as extremum seekers. In this technique, a cost function in terms of the desired sawtooth period is optimized on-line. The Extremum Seeking Controller (ESC) is model-free and is therefore inherently robust against model uncertainty. Simulations show that the controller is robust against variations in plasma parameters, delay in the sawtooth crash detection, and noise on the in- and outputs of the process. Because of its robustness, ESC is a promising candidate strategy for a wide range of fusion-related control problems with high model uncertainty.
Keywords
Tokamak devices; adaptive control; fusion reactors; optimal control; physical instrumentation control; robust control; sawtooth instability; uncertain systems; ESC; cost function; dynamical behavior; extremum seeker; extremum seeking controller; fusion-related control problem; model uncertainty; plasma condition; robust adaptive control; sawtooth crash detection; sawtooth instability; sawtooth period controller; tokamak nuclear fusion reactor; Computer crashes; Cost function; Delay; Oscillators; Plasmas; Process control; Robustness;
fLanguage
English
Publisher
ieee
Conference_Titel
American Control Conference (ACC), 2012
Conference_Location
Montreal, QC
ISSN
0743-1619
Print_ISBN
978-1-4577-1095-7
Electronic_ISBN
0743-1619
Type
conf
DOI
10.1109/ACC.2012.6314900
Filename
6314900
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