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Plan of ITER remote experimentation center
Affiliation:1. Japan Atomic Energy Agency, 2-166 Obuchi Rokkasho, Kitakami-gun, Aomori 039-3212, Japan;2. Fusion for Energy, Torres Diagonal Litoral, B3, 13/03, 08019 Barcelona, Spain;3. National Institute for Fusion Science and Project Leader of IFERC, 2-166 Obuchi, Rokkasho, Kamikita-gun, Aomori 039-3212, Japan;1. ITER Organization, Route de Vinon sur Verdon, 13115 Saint Paul Lez Durance, France;2. Frazer-Nash Consultancy Ltd., Stonebridge House, Dorking Business Park, Dorking, Surrey RH4 1HJ, UK;3. Comex-Nucleaire, 13115 Saint Paul Lez Durance, France;4. Fusion for Energy, Josep Pla, 2, Torres Diagonal Litoral B3, Barcelona E-08019, Spain;1. ITER Organization, Route de Vinon-sur-Verdon, CS 90 046, 13067 St Paul Lez Durance Cedex, France;2. CREATE/Università di Napoli Federico II, Dip. Ingegneria Elettrica e delle Tecnologie dell’Informazione, Italy;3. General Atomics, San Diego, CA, USA;4. CREATE/Seconda Università di Napoli, Dip. Ingegneria Industriale e dell’Informazione, Italy;5. Fusion for Energy, Barcelona, Spain;6. Max Planck Institute for Plasma Physics, EURATOM Association, Garching, Germany;7. Culham Centre for Fusion Energy, Culham Science Centre, Abingdon, UK;1. CCFE, Culham Science Centre, Abingdon, OX14 3DB, UK;2. ITER Organization, Route de Vinon sur Verdon, 13115 Saint Paul lez Durance, France;1. Karlsruhe Institute of Technology, Institute for Neutron Physics and Reactor Technology, Hermann-von-Helmholtz-Platz 1, 76344 Eggenstein-Leopoldshafen Karlsruhe, Germany;2. ITER Organization, Route de Vinon-sur-Verdon, CS 90 046, 13067 St. Paul Lez Durance Cedex, France;3. Russian Federation ITER Domestic Agency, Kurchatov sq. 1, 123182 Moscow, Russia;1. Consorzio RFX (CNR, ENEA, INFN, Università di Padova, Acciaierie Venete S.p.A.), Padova, Italy;2. Fusion for Energy F4E, Barcelona, Spain;3. Ettore Zanon S.p.A., Schio (VI), Italy;1. UNED, Department of Energy Engineering, C/ Juan del Rosal 12, E-28040 Madrid, Spain;2. ITER Organization, Route de Vinon-sur-Verdon, CS 90 046, 13067 St. Paul Lez Durance Cedex, France
Abstract:Plan of ITER remote experimentation center (REC) based on the broader approach (BA) activity of the joint program of Japan and Europe (EU) is described. Objectives of REC activity are (1) to identify the functions and solve the technical issues for the construction of the REC for ITER at Rokkasho, (2) to develop the remote experiment system and verify the functions required for the remote experiment by using the Satellite Tokamak (JT-60SA) facilities in order to make the future experiments of ITER and JT-60SA effectively and efficiently implemented, and (3) to test the functions of REC and demonstrate the total system by using JT-60SA and existing other facilities in EU. Preliminary identified items to be developed are (1) Functions of the remote experiment system, such as setting of experiment parameters, shot scheduling, real time data streaming, communication by video-conference between the remote-site and on-site, (2) Effective data transfer system that is capable of fast transfer of the huge amount of data between on-site and off-site and the network connecting the REC system, (3) Storage system that can store/access the huge amount of data, including database management, (4) Data analysis software for the data viewing of the diagnostic data on the storage system, (5) Numerical simulation for preparation and estimation of the shot performance and the analysis of the plasma shot. Detailed specifications of the above items will be discussed and the system will be made in these four years in collaboration with tokamak facilities of JT-60SA and EU tokamak, experts of informatics, activities of plasma simulation and ITER. Finally, the function of REC will be tested and the total system will be demonstrated by the middle of 2017.
Keywords:ITER  Remote experimentation  Fast data transfer  Data storage  Simulation  Data analysis
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