International audienceThis paper describes an identification technique for control-oriented linear time-invariant models of the coupled dynamics of the electron temperature and the poloidal magnetic flux for advanced operational tokamak scenarios. The actuators consist of two neutral beam injectors, an electron cyclotron current drive and the ohmic coil that provides the loop voltage at the plasma surface. The model is identified using a combination of subspace and output-error methods for state-space multiple-input and multiple-output system identification. This identification is applied on sets of simulated data from the METIS tokamak simulator with parameters typical of the DIII-D tokamak, and the results of the identification are presen...
International audienceSimple physical models are often difficult to obtain for nonhomogeneous transp...
In order to simulate a full tokamak discharge, a fast integrated tokamak modeling tool for scenario ...
A dynamic system response model for plasma in Mega-Amp Spherical Tokamak (MAST) has been developed u...
International audienceThis paper describes an identification technique for control-oriented linear t...
Fast and reliable identification of plasma parameters in tokamak reactors is an issue of primary imp...
East and reliable identification of plasma parameters in tokamak reactors is an issue of primary imp...
The paper deals with the identification of plasma equilibrium reconstruction in D-shaped tokamaks on...
Real-time control of radially distributed parameters was achieved for the first time on JET in 2004,...
In this paper we describe the application of an H ∞ system identification procedure to a Tokamak. Th...
Real-time simultaneous control of several radially distributed magnetic and kinetic plasma parameter...
In this paper we describe the application of MISO System Identification to Tokamak simulations and m...
International audienceIn order to simulate a full tokamak discharge, a fast integrated tokamak model...
A key aspect of the controlled thermonuclear fusion is the plasma identification process, that is th...
This paper describes a new technique which has been implemented on the JET tokamak to investigate in...
International audienceSimple physical models are often difficult to obtain for nonhomogeneous transp...
In order to simulate a full tokamak discharge, a fast integrated tokamak modeling tool for scenario ...
A dynamic system response model for plasma in Mega-Amp Spherical Tokamak (MAST) has been developed u...
International audienceThis paper describes an identification technique for control-oriented linear t...
Fast and reliable identification of plasma parameters in tokamak reactors is an issue of primary imp...
East and reliable identification of plasma parameters in tokamak reactors is an issue of primary imp...
The paper deals with the identification of plasma equilibrium reconstruction in D-shaped tokamaks on...
Real-time control of radially distributed parameters was achieved for the first time on JET in 2004,...
In this paper we describe the application of an H ∞ system identification procedure to a Tokamak. Th...
Real-time simultaneous control of several radially distributed magnetic and kinetic plasma parameter...
In this paper we describe the application of MISO System Identification to Tokamak simulations and m...
International audienceIn order to simulate a full tokamak discharge, a fast integrated tokamak model...
A key aspect of the controlled thermonuclear fusion is the plasma identification process, that is th...
This paper describes a new technique which has been implemented on the JET tokamak to investigate in...
International audienceSimple physical models are often difficult to obtain for nonhomogeneous transp...
In order to simulate a full tokamak discharge, a fast integrated tokamak modeling tool for scenario ...
A dynamic system response model for plasma in Mega-Amp Spherical Tokamak (MAST) has been developed u...