System modelling and identification of Mega-Amp Spherical Tokamak

A dynamic system response model for plasma in Mega-Amp Spherical Tokamak (MAST) has been developed using RZIP. This is a linearized tokamak model. It assumes a constant plasma current distribution and axisymmetry. The plasma and conducting structures are approximated by discrete toroidal current fil...

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Main Authors: Qin, J, Limebeer, D, McArdle, G, Wainwright, J
Format: Journal article
Language:English
Published: 2001
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author Qin, J
Limebeer, D
McArdle, G
Wainwright, J
author_facet Qin, J
Limebeer, D
McArdle, G
Wainwright, J
author_sort Qin, J
collection OXFORD
description A dynamic system response model for plasma in Mega-Amp Spherical Tokamak (MAST) has been developed using RZIP. This is a linearized tokamak model. It assumes a constant plasma current distribution and axisymmetry. The plasma and conducting structures are approximated by discrete toroidal current filaments. RZIP generates a state-space model of the system behaviour, with PF coil voltages as inputs and various predicted diagnostic measurements as outputs. A separate SIMULINK model has been developed to represent the MAST plant, power supplies and analogue feedback controller. The RZIP and SIMULINK models were combined to produce a complete system model. This combined model was used to simulate test shots under both vacuum and plasma conditions. The two sets of traces cohere reasonably well, with some difference in attenuation levels. System identification experiments were carried out on the PF coils, with particular attention paid to the vertical field coils, under vacuum conditions. The frequency response behaviour was found using an excitation signal comprising a number of sinusoids. The RZIP model was verified by comparing its predicted response with experimental data. © 2001 Elsevier Science B.V. All rights reserved.
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spelling oxford-uuid:7e8a137c-140c-4701-86f6-e4efc4d6c5382022-03-26T21:10:43ZSystem modelling and identification of Mega-Amp Spherical TokamakJournal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:7e8a137c-140c-4701-86f6-e4efc4d6c538EnglishSymplectic Elements at Oxford2001Qin, JLimebeer, DMcArdle, GWainwright, JA dynamic system response model for plasma in Mega-Amp Spherical Tokamak (MAST) has been developed using RZIP. This is a linearized tokamak model. It assumes a constant plasma current distribution and axisymmetry. The plasma and conducting structures are approximated by discrete toroidal current filaments. RZIP generates a state-space model of the system behaviour, with PF coil voltages as inputs and various predicted diagnostic measurements as outputs. A separate SIMULINK model has been developed to represent the MAST plant, power supplies and analogue feedback controller. The RZIP and SIMULINK models were combined to produce a complete system model. This combined model was used to simulate test shots under both vacuum and plasma conditions. The two sets of traces cohere reasonably well, with some difference in attenuation levels. System identification experiments were carried out on the PF coils, with particular attention paid to the vertical field coils, under vacuum conditions. The frequency response behaviour was found using an excitation signal comprising a number of sinusoids. The RZIP model was verified by comparing its predicted response with experimental data. © 2001 Elsevier Science B.V. All rights reserved.
spellingShingle Qin, J
Limebeer, D
McArdle, G
Wainwright, J
System modelling and identification of Mega-Amp Spherical Tokamak
title System modelling and identification of Mega-Amp Spherical Tokamak
title_full System modelling and identification of Mega-Amp Spherical Tokamak
title_fullStr System modelling and identification of Mega-Amp Spherical Tokamak
title_full_unstemmed System modelling and identification of Mega-Amp Spherical Tokamak
title_short System modelling and identification of Mega-Amp Spherical Tokamak
title_sort system modelling and identification of mega amp spherical tokamak
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