The ITER plasma control system (PCS) has successfully completed its final design for the first plasma (FP) and engineering operations (EOs) phase and plant system commissioning has begun as ITER prepares for this first operation phase. Commissioning of the essential plant systems will continue as each plant system is completed and made ready for operation. Tokamak assembly has begun with the base and lower cylinder of the cryostat and the lower most poloidal field (PF) coil installed in the tokamak pit. The first vacuum vessel (VV) sector and accompanying two toroidal field (TF) coils are being prepared for transfer to the pit. Once the tokamak is assembled, the cryostat top lid is closed and pump down begins, this will start approximately ...
The ITER ECRH&CD system is designed to inject 20 MW of millimetre-wave at 170 GHz into the vacuum ve...
The electron cyclotron (EC) heating and current drive (H&CD) system developed for the ITER is made o...
The ITER Electron Cyclotron Resonance Heating (ECRH) & Current Drive (ECCD) system is planned to be ...
The ITER plasma control system (PCS) has successfully completed its final design for the first plasm...
\u3cp\u3eAn overview of the preliminary design of the ITER plasma control system (PCS) is described ...
Electricity production through the control of nuclear fusion reactions is a promising option to meet...
The ITER Plasma Control System (PCS) will control ITER plasma operation, with performance requiremen...
Design of the ITER plasma control system is proceeding towards its next- preliminary design - stage....
The ITER Plasma Control System (PCS) is an essential component for ITER operations. It will include ...
The plasma control system (PCS) in a tokamak device is in charge of controlling the evolution of pla...
In view of the preparation for the operation of the ITER tokamak it is necessary to develop the plas...
The ITER ECRH&CD system is designed to inject 20 MW of millimetre-wave at 170 GHz into the vacuum ve...
The electron cyclotron (EC) heating and current drive (H&CD) system developed for the ITER is made o...
The ITER Electron Cyclotron Resonance Heating (ECRH) & Current Drive (ECCD) system is planned to be ...
The ITER plasma control system (PCS) has successfully completed its final design for the first plasm...
\u3cp\u3eAn overview of the preliminary design of the ITER plasma control system (PCS) is described ...
Electricity production through the control of nuclear fusion reactions is a promising option to meet...
The ITER Plasma Control System (PCS) will control ITER plasma operation, with performance requiremen...
Design of the ITER plasma control system is proceeding towards its next- preliminary design - stage....
The ITER Plasma Control System (PCS) is an essential component for ITER operations. It will include ...
The plasma control system (PCS) in a tokamak device is in charge of controlling the evolution of pla...
In view of the preparation for the operation of the ITER tokamak it is necessary to develop the plas...
The ITER ECRH&CD system is designed to inject 20 MW of millimetre-wave at 170 GHz into the vacuum ve...
The electron cyclotron (EC) heating and current drive (H&CD) system developed for the ITER is made o...
The ITER Electron Cyclotron Resonance Heating (ECRH) & Current Drive (ECCD) system is planned to be ...