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research article

Experimental vertical stability studies for ITER performance and design guidance

Humphreys, D. A.
•
Casper, T. A.
•
Eidietis, N.
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2009
Nuclear Fusion

Operating experimental devices have provided key inputs to the design process for ITER axisymmetric control. In particular, experiments have quantified controllability and robustness requirements in the presence of realistic noise and disturbance environments, which are difficult or impossible to characterize with modelling and simulation alone. This kind of information is particularly critical for ITER vertical control, which poses the highest demands on poloidal field system performance, since the consequences of loss of vertical control can be severe. This work describes results of multi-machine studies performed under a joint ITPA experiment (MDC-13) on fundamental vertical control performance and controllability limits. We present experimental results from Alcator C-Mod, DIII-D, NSTX, TCV and JET, along with analysis of these data to provide vertical control performance guidance to ITER. Useful metrics to quantify this control performance include the stability margin and maximum controllable vertical displacement. Theoretical analysis of the maximum controllable vertical displacement suggests effective approaches to improving performance in terms of this metric, with implications for ITER design modifications. Typical levels of noise in the vertical position measurement and several common disturbances which can challenge the vertical control loop are assessed and analysed.

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Type
research article
DOI
10.1088/0029-5515/49/11/115003
Web of Science ID

WOS:000272077800004

Author(s)
Humphreys, D. A.
Casper, T. A.
Eidietis, N.
Ferrara, M.
Gates, D. A.
Hutchinson, I. H.
Jackson, G. L.
Kolemen, E.
Leuer, J. A.
Lister, J.  
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Date Issued

2009

Publisher

IOP Publishing Ltd

Published in
Nuclear Fusion
Volume

49

Issue

11

Article Number

115003

Subjects

Operation

Editorial or Peer reviewed

REVIEWED

Written at

OTHER

EPFL units
CRPP  
SPC  
Available on Infoscience
May 19, 2010
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/50198
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