In this study we derive linear models describing the dynamics of the n = 0 plasma displacements around the main ITER equilibrium configurations. The models derived are consistent with the MHD equilibrium constraint as well as with the 3D geometry of the vacuum vessel and blanket outer triangular support where the main eddy currents flow takes place. Particular emphasis is placed on the analysis of the stability margin, growth time and minimum stabilization voltage. The performances of the present ITER control system (single loop) are compared to those of an upgraded system (double-loop) that is here proposed to improve the stability domain of the ITER plasmas forecast
The source of the vertical instability in tokamaks is relatively well understood, and stabilizing co...
The International Thermonuclear Experimental Reactor (ITER) is the next step toward the realization ...
Vertical instability of an elongated plasma and its stabilized concepts by in-vessel components and ...
In this study we derive linear models describing the dynamics of the n = 0 plasma displacements arou...
In this study we derive linear models describing the dynamics of the n = 0 plasma displacements arou...
In this paper we summarize the results of the modelling, analyses and assessment of the ITER Vertica...
This paper describes the progress in analysis of the ITER plasma vertical stabilisation (VS) system ...
In the framework of the ITER project, an investigation has been conducted on an alternative vessel a...
In this paper, some aspects related to the plasma magnetic control of the reverse shear configuratio...
In this paper we summarize the results of the modelling, analyses and assessment of the ITER Vertica...
The stability of the vertical position control system in TCV is analysed using two different plasma ...
The problem of the vertical instability of the plasma column in the NET/ITER reactor is analyzed via...
In simulating reference scenarios proposed for ITER operation, we also explore performance of the po...
As part of the ITER design review, a reassessment of the specifications underlying the design of the...
The source of the vertical instability in tokamaks is relatively well understood, and stabilizing co...
The International Thermonuclear Experimental Reactor (ITER) is the next step toward the realization ...
Vertical instability of an elongated plasma and its stabilized concepts by in-vessel components and ...
In this study we derive linear models describing the dynamics of the n = 0 plasma displacements arou...
In this study we derive linear models describing the dynamics of the n = 0 plasma displacements arou...
In this paper we summarize the results of the modelling, analyses and assessment of the ITER Vertica...
This paper describes the progress in analysis of the ITER plasma vertical stabilisation (VS) system ...
In the framework of the ITER project, an investigation has been conducted on an alternative vessel a...
In this paper, some aspects related to the plasma magnetic control of the reverse shear configuratio...
In this paper we summarize the results of the modelling, analyses and assessment of the ITER Vertica...
The stability of the vertical position control system in TCV is analysed using two different plasma ...
The problem of the vertical instability of the plasma column in the NET/ITER reactor is analyzed via...
In simulating reference scenarios proposed for ITER operation, we also explore performance of the po...
As part of the ITER design review, a reassessment of the specifications underlying the design of the...
The source of the vertical instability in tokamaks is relatively well understood, and stabilizing co...
The International Thermonuclear Experimental Reactor (ITER) is the next step toward the realization ...
Vertical instability of an elongated plasma and its stabilized concepts by in-vessel components and ...