A computational method is presented to determine the tokamak actuator time evolution (trajectories) required to optimally reach a given point in the tokamak operating space while satisfying a set of constraints. Usually, trajectories of plasma auxiliary heating, current drive and plasma current required during the transient phases of a tokamak shot to reach a desired shape of the plasma temperature and safety factor (q) profiles are determined by trial-and-error by physics operators. In this paper, these trajectories are calculated by solving a non-linear, constrained, finite-time optimal control problem. The optimization problem contains a physics model of the non-linear plasma profile dynamics, a cost function to be minimized, and a set o...
Real-time simultaneous control of several radially distributed magnetic and kinetic plasma parameter...
Real-time simultaneous control of several radially distributed magnetic and kinetic plasma parameter...
Real-time simultaneous control of several radially distributed magnetic and kinetic plasma parameter...
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) ...
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...
Optimal actuator trajectories for an ITER hybrid scenario ramp-up are computed using a numerical opt...
Establishing a good current spatial profile in tokamak fusion reactors is crucial to effective stead...
International audienceThe real-time control of plasma position, shape and current in a tokamak has t...
A controller is designed for the tokamak safety factor profile that takes real-time-varying operatio...
International audienceThe real-time control of plasma position, shape and current in a tokamak has t...
In this paper, we consider a simplified dynamic model describing the evolution of the poloidal flux ...
Real-time simultaneous control of several radially distributed magnetic and kinetic plasma parameter...
Real-time simultaneous control of several radially distributed magnetic and kinetic plasma parameter...
Real-time simultaneous control of several radially distributed magnetic and kinetic plasma parameter...
Real-time simultaneous control of several radially distributed magnetic and kinetic plasma parameter...
Real-time simultaneous control of several radially distributed magnetic and kinetic plasma parameter...
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) ...
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...
Optimal actuator trajectories for an ITER hybrid scenario ramp-up are computed using a numerical opt...
Establishing a good current spatial profile in tokamak fusion reactors is crucial to effective stead...
International audienceThe real-time control of plasma position, shape and current in a tokamak has t...
A controller is designed for the tokamak safety factor profile that takes real-time-varying operatio...
International audienceThe real-time control of plasma position, shape and current in a tokamak has t...
In this paper, we consider a simplified dynamic model describing the evolution of the poloidal flux ...
Real-time simultaneous control of several radially distributed magnetic and kinetic plasma parameter...
Real-time simultaneous control of several radially distributed magnetic and kinetic plasma parameter...
Real-time simultaneous control of several radially distributed magnetic and kinetic plasma parameter...
Real-time simultaneous control of several radially distributed magnetic and kinetic plasma parameter...
Real-time simultaneous control of several radially distributed magnetic and kinetic plasma parameter...