Effect of electron cyclotron beam width to neoclassical tearing mode stabilization by minimum seeking control in ITER
Author:
Publisher
IOP Publishing
Subject
Condensed Matter Physics,Nuclear and High Energy Physics
Link
http://iopscience.iop.org/article/10.1088/1741-4326/aa95d1/pdf
Reference47 articles.
1. Chapter 1: Overview and summary
2. Experiments on neoclassical tearing mode stabilization by ECCD in ASDEX Upgrade
3. Complete Suppression of Neoclassical Tearing Modes with Current Drive at the Electron-Cyclotron-Resonance Frequency in ASDEX Upgrade Tokamak
4. Control of neoclassical tearing modes in DIII–D
5. Discharge improvement through control of neoclassical tearing modes by localized ECCD in DIII-D
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1. Avoiding fusion plasma tearing instability with deep reinforcement learning;Nature;2024-02-21
2. Evaluation of ECCD power requirement for neoclassical tearing modes suppression in the CFETR hybrid scenario;Nuclear Engineering and Technology;2023-08
3. Multimodal Prediction of Tearing Instabilities in a Tokamak;2023 International Joint Conference on Neural Networks (IJCNN);2023-06-18
4. Feedforward beta control in the KSTAR tokamak by deep reinforcement learning;Nuclear Fusion;2021-09-02
5. Magnetic island suppression by electron cyclotron current drive as converse of a forced reconnection problem;Journal of Plasma Physics;2018-06
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