Optimal actuator trajectories for an ITER hybrid scenario ramp-up are computed using a numerical optimization method. For both L-mode and H-mode scenarios, the time trajectory of plasma current, EC heating and current drive distribution is determined that minimizes a chosen cost function, while satisfying constraints. The cost function is formulated to reflect two desired properties of the plasma q profile at the end of the ramp-up. The first objective is to maximize the ITG turbulence threshold by maximizing the volume-averaged s/q ratio. The second objective is to achieve a stationary q profile by having a flat loop voltage profile. Actuator and physics-derived constraints are included, imposing limits on plasma current, ramp rates, inter...
This work presents a fast and robust method for optimizing the stationary radial distribution of tem...
This work presents a fast and robust method for optimizing the stationary radial distribution of tem...
This work presents a fast and robust method for optimizing the stationary radial distribution of tem...
Optimal actuator trajectories for an ITER hybrid scenario ramp-up are computed using a numerical opt...
Optimal actuator trajectories for an ITER hybrid scenario ramp-up are computed using a numerical opt...
The current ramp-up phase for the ITER hybrid scenario is analysed with the CRONOS integrated modell...
A computational method is presented to determine the tokamak actuator time evolution (trajectories) ...
A computational method is presented to determine the tokamak actuator time evolution (trajectories) ...
The current ramp-up phase for the ITER hybrid scenario is analysed with the CRONOS integrated modell...
The current ramp-up phase for the ITER hybrid scenario is analysed with the CRONOS integrated modell...
The current ramp-up phase for the ITER hybrid scenario is analysed with the CRONOS integrated modell...
The current ramp-up phase for the ITER hybrid scenario is analysed with the CRONOS integrated modell...
The current ramp-up phase for the ITER hybrid scenario is analysed with the CRONOS integrated modell...
A computational method is presented to determine the tokamak actuator time evolution (trajectories) ...
The current ramp-up phase for the ITER hybrid scenario is analysed with the CRONOS integrated modell...
This work presents a fast and robust method for optimizing the stationary radial distribution of tem...
This work presents a fast and robust method for optimizing the stationary radial distribution of tem...
This work presents a fast and robust method for optimizing the stationary radial distribution of tem...
Optimal actuator trajectories for an ITER hybrid scenario ramp-up are computed using a numerical opt...
Optimal actuator trajectories for an ITER hybrid scenario ramp-up are computed using a numerical opt...
The current ramp-up phase for the ITER hybrid scenario is analysed with the CRONOS integrated modell...
A computational method is presented to determine the tokamak actuator time evolution (trajectories) ...
A computational method is presented to determine the tokamak actuator time evolution (trajectories) ...
The current ramp-up phase for the ITER hybrid scenario is analysed with the CRONOS integrated modell...
The current ramp-up phase for the ITER hybrid scenario is analysed with the CRONOS integrated modell...
The current ramp-up phase for the ITER hybrid scenario is analysed with the CRONOS integrated modell...
The current ramp-up phase for the ITER hybrid scenario is analysed with the CRONOS integrated modell...
The current ramp-up phase for the ITER hybrid scenario is analysed with the CRONOS integrated modell...
A computational method is presented to determine the tokamak actuator time evolution (trajectories) ...
The current ramp-up phase for the ITER hybrid scenario is analysed with the CRONOS integrated modell...
This work presents a fast and robust method for optimizing the stationary radial distribution of tem...
This work presents a fast and robust method for optimizing the stationary radial distribution of tem...
This work presents a fast and robust method for optimizing the stationary radial distribution of tem...