Published July 1, 2017 | Version v1
Journal article

Improved localisation of neoclassical tearing modes by combining multiple diagnostic estimates

  • 1. Max Planck Institute for Plasma Physics, Boltzmannstrasse 2, 85748 Garching (Germany)

Description

Neoclassical tearing modes (NTMs) strongly degrade confinement in tokamaks, and are a leading cause of disruptions. They can be stabilised by targeted electron cyclotron current drive (ECCD), however the effectiveness of ECCD depends strongly on the accuracy or misalignment between ECCD and the NTM. The first step to ensure minimal misalignment is a good estimate of the NTM location. In previous NTM control experiments, three methods have been used independently to estimate the NTM location: the magnetic equilibrium, correlation between magnetic and spatially-resolved temperature fluctuations, and the amplitude response of the NTM to nearby ECCD. This submission describes an algorithm which has been designed to fuse these three estimates into one, taking into account many of the characteristics of each diagnostic. Although the method diverges from standard data fusion methods, results from simulation and experiment confirm that the algorithm achieves its stated goal of providing an estimate that is more reliable and accurate than any of the individual estimates. (paper)

Availability note (English)

Available from http://dx.doi.org/10.1088/1741-4326/aa6e0f

Additional details

Identifiers

Publishing Information

Journal Title
Nuclear Fusion
Journal Volume
57
Journal Issue
7
Journal Page Range
[9 p.]
ISSN
0029-5515
CODEN
NUFUAU

INIS

Country of Publication
International Atomic Energy Agency (IAEA)
Country of Input or Organization
International Atomic Energy Agency (IAEA)
INIS RN
51089649
Subject category
S70: PLASMA PHYSICS AND FUSION TECHNOLOGY;
Descriptors DEI
ECR CURRENT DRIVE; NEOCLASSICAL TRANSPORT THEORY; TEARING INSTABILITY; TOKAMAK DEVICES
Descriptors DEC
CHARGED-PARTICLE TRANSPORT THEORY; CLOSED PLASMA DEVICES; INSTABILITY; NON-INDUCTIVE CURRENT DRIVE; PLASMA INSTABILITY; PLASMA MACROINSTABILITIES; THERMONUCLEAR DEVICES; TRANSPORT THEORY

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