The main objective of the ITER ECRH upper launcher (UL) is to control magnetohydrodynamic activity, in particular neoclassical tearing modes (NTMs), by driving several MW of EC current near the q = 1, 3/2, 2 flux surfaces, where NTMs are expected to occur. The steering of the EC power is done by the steering mechanism assembly (SMA) that comprises a reflecting mirror and a frictionless and backlash free pneumo-mechanical system actuated with pressurised helium gas. The control requirements for this component in terms of steering accuracy and speed are reviewed. With respect to these requirements, the performance of the first SMA prototype is assessed in a mock up of the UL pneumatic configuration. The expected design characteristics of the ...
The aim of the ITER electron cyclotron heating and current drive upper launcher (UL) is to control m...
Four electron cyclotron heating upper launchers (ECHULs) will be used at ITER to counteract magnetoh...
Abstract. Electron Cyclotron Current Drive (ECCD) will become the main scheme on ITER for the stabil...
The main objective of the ITER ECRH upper launcher (UL) is to control magnetohydrodynamic activity, ...
The ITER Heating and Current Drive Upper Launcher (H&CD EC UL) uses a pneumomechanical steering-mirr...
The ITER Heating and Current Drive Upper Launcher (H&CD EC UL) uses a pneumomechanical steering-...
The purpose of the ITER electron cyclotron resonance heating (ECRH) upper launcher (UL), or antennae...
Abstract. The purpose of the ITER electron cyclotron resonance heating (ECRH) upper port launcher is...
Abstract. The ITER ECH heating and current drive system delivers 24MW (170GHz), which can be directe...
The ITER ECH upper launcher is devoted to directing up to 8 2NM beams per port plug over half of the...
The design of a remote steering (RS) variant of the electron cyclotron heating (ECH) upper port laun...
The design of the ITER electron cyclotron launchers recently reached the preliminary design level - ...
Electron cyclotron current drive will become the main scheme on ITER for the stabilization of neocla...
The aim of the ITER electron cyclotron heating and current drive upper launcher (UL) is to control m...
Four electron cyclotron heating upper launchers (ECHULs) will be used at ITER to counteract magnetoh...
Abstract. Electron Cyclotron Current Drive (ECCD) will become the main scheme on ITER for the stabil...
The main objective of the ITER ECRH upper launcher (UL) is to control magnetohydrodynamic activity, ...
The ITER Heating and Current Drive Upper Launcher (H&CD EC UL) uses a pneumomechanical steering-mirr...
The ITER Heating and Current Drive Upper Launcher (H&CD EC UL) uses a pneumomechanical steering-...
The purpose of the ITER electron cyclotron resonance heating (ECRH) upper launcher (UL), or antennae...
Abstract. The purpose of the ITER electron cyclotron resonance heating (ECRH) upper port launcher is...
Abstract. The ITER ECH heating and current drive system delivers 24MW (170GHz), which can be directe...
The ITER ECH upper launcher is devoted to directing up to 8 2NM beams per port plug over half of the...
The design of a remote steering (RS) variant of the electron cyclotron heating (ECH) upper port laun...
The design of the ITER electron cyclotron launchers recently reached the preliminary design level - ...
Electron cyclotron current drive will become the main scheme on ITER for the stabilization of neocla...
The aim of the ITER electron cyclotron heating and current drive upper launcher (UL) is to control m...
Four electron cyclotron heating upper launchers (ECHULs) will be used at ITER to counteract magnetoh...
Abstract. Electron Cyclotron Current Drive (ECCD) will become the main scheme on ITER for the stabil...