Development of algorithms for the end-end system simulation and performance analysis for a high-frequency magnetic diagnostic system: Application to ITER, JET and TCV

Author:

Testa D.ORCID,Ambrosino G.,Ariola M.,deTommasi G.,Pironti A.

Publisher

Elsevier BV

Subject

Mechanical Engineering,General Materials Science,Nuclear Energy and Engineering,Civil and Structural Engineering

Reference10 articles.

1. Manufacturing, installation, commissioning and first results with the 3D low-temperature co-fired ceramic high-frequency magnetic sensors on the tokamak à configuration variable;Testa;Tutor. Pap. Rev. Sci. Instrum.,2020

2. Integration of a real-time node for magnetic perturbations signal analysis in the distributed digital control system of the TCV Tokamak;Galperti;IEEE Trans. Nucl. Sci.,2017

3. ITER measurement specifications for the HF magnetic diagnostic system: system Design Description (DDD) 55.A0 Magnetic Diagnostics, document 3UYGX, dated 14.09.2015; document available upon request to the corresponding author of this work (duccio.testa@epfl.ch).

4. Contract document for the F4E-ITER contract F4E-OPE-0883 for the development of RT software for the analysis of magnetic instabilities in ITER; relevant extracts from this document are available upon request to the corresponding author of this work(duccio.testa@epfl.ch).

5. Sparse representation of signals: from astrophysics to real-time data analysis for fusion plasmas and system optimization analysis for ITER, topical review paper;Testa;Plasma Phys. Contr. Fusion,2016

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