Key features and main results about the control of the plasma shape in ITER are presented. A control algorithm is designed to control up to 6 gaps between the plasma separatrix and the plasma facing components during the reference burn phase. Nonlinear simulations show the performances of the controller in the presence of plasma vertical position offsets, beta drops and power supply voltage saturation.

Plasma position and shape control for ITER / Portone, A.; Gribov, Y.; Huguet, M.; Mondino, P. L.; Albanese, Raffaele; Ciscato, D.; Humphreys, D. A.; Kessel, C. E.; Pearlstein, L. D.; Ward, D. J.. - STAMPA. - 1:(1995), pp. 345-348. (Intervento presentato al convegno Proceedings of the 1995 16th IEEE/NPSS Symposium on Fusion Engineering. Part 1 (of 2) tenutosi a Champaign, IL, USA nel 1995).

Plasma position and shape control for ITER

ALBANESE, Raffaele;
1995

Abstract

Key features and main results about the control of the plasma shape in ITER are presented. A control algorithm is designed to control up to 6 gaps between the plasma separatrix and the plasma facing components during the reference burn phase. Nonlinear simulations show the performances of the controller in the presence of plasma vertical position offsets, beta drops and power supply voltage saturation.
1995
0780329694
Plasma position and shape control for ITER / Portone, A.; Gribov, Y.; Huguet, M.; Mondino, P. L.; Albanese, Raffaele; Ciscato, D.; Humphreys, D. A.; Kessel, C. E.; Pearlstein, L. D.; Ward, D. J.. - STAMPA. - 1:(1995), pp. 345-348. (Intervento presentato al convegno Proceedings of the 1995 16th IEEE/NPSS Symposium on Fusion Engineering. Part 1 (of 2) tenutosi a Champaign, IL, USA nel 1995).
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11588/486021
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