Control of elongated plasma in presence of ELMs in the JET tokamak

T Bellizio, R Albanese, G Ambrosino… - … on Nuclear Science, 2011 - ieeexplore.ieee.org
T Bellizio, R Albanese, G Ambrosino, M Ariola, G Artaserse, F Crisanti, V Coccorese…
IEEE Transactions on Nuclear Science, 2011ieeexplore.ieee.org
Tokamaks are the most promising approach for nuclear fusion on earth. They are toroidal
machines where the plasma is heated in a ring-shaped vessel and kept away from the
vessel by applied magnetic fields. To achieve high performance in tokamaks, plasmas with
elongated poloidal cross-section are needed. Such elongated plasmas are vertically
unstable, hence position control on a fast time scale is clearly an essential feature for all
tokamak devices. In this context the Plasma Control Upgrade project was aimed at …
Tokamaks are the most promising approach for nuclear fusion on earth. They are toroidal machines where the plasma is heated in a ring-shaped vessel and kept away from the vessel by applied magnetic fields. To achieve high performance in tokamaks, plasmas with elongated poloidal cross-section are needed. Such elongated plasmas are vertically unstable, hence position control on a fast time scale is clearly an essential feature for all tokamak devices. In this context the Plasma Control Upgrade project was aimed at increasing the capabilities of the Vertical Stabilization (VS) of the JET tokamak. This paper introduces the new JET VS system and focuses on how the flexibility of this real-time system has been exploited to enlarge its operational limits in terms of maximum controllable disturbance. Eventually, some experimental results achieved during the last experimental campaigns are presented.
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