Article ID Journal Published Year Pages File Type
271629 Fusion Engineering and Design 2014 10 Pages PDF
Abstract

•JET plasma position and current control system enhanced for the JET ITER like wall.•Vertical stabilization system enhanced to speed up its response and to withstand larger perturbations.•Improved termination management system.•Implementation of the current limit avoidance system.•Implementation of PFX-on-early-task.

The upgrade of Joint European Torus (JET) to a new all-metal wall, the so-called ITER-like wall (ILW), has posed a set of new challenges regarding both machine operation and protection. The plasma position and current control (PPCC) system plays a crucial role in minimizing the possibility that the plasma could permanently damage the ILW. The installation of the ILW has driven a number of upgrades of the two PPCC components, namely the Vertical Stabilization (VS) system and the Shape Controller (SC). The VS system has been enhanced in order to speed up its response and to withstand larger perturbations. The SC upgrade includes three new features: an improved termination management system, the current limit avoidance system, and the PFX-on-early-task. This paper describes the PPCC upgrades listed above, focusing on the implementation issues and on the experimental results achieved during the 2011–12 JET experimental campaigns.

Related Topics
Physical Sciences and Engineering Energy Energy Engineering and Power Technology
Authors
, , , , , ,