Remote experiment with WEST from ITER Remote Experimentation Centre

[1]  J. M. Theis,et al.  Remote experiment participation on Tore-Supra , 2004 .

[2]  G. Abla,et al.  Remote participation in ITER exploitation—conceptual design , 2011 .

[3]  Masayasu Sato,et al.  Systems for remote participation in JT-60 experiments , 1999 .

[4]  M. Ruiz,et al.  Data processing in fusion experiments with remote participation , 2003 .

[5]  Norihiro Nakajima,et al.  Verification tests for remote participation at ITER REC , 2018 .

[6]  V. Schmidt,et al.  Trends in computing systems for large fusion experiments , 2004 .

[7]  Torsten Bluhm,et al.  A W7-X experiment program editor––A usage driven development , 2012 .

[8]  Shunji Abe,et al.  Long distance fast data transfer experiments for the ITER Remote Experiment , 2016 .

[9]  Augusto Pereira,et al.  TJ-II Operation Tracking from Cadarache , 2006 .

[10]  Kazunobu Nagasaki,et al.  Development and Demonstration of Remote Experiment System with High Security in JT-60U , 2009 .

[11]  Takahisa Ozeki,et al.  Progress on ITER remote experimentation centre , 2016 .

[12]  G. Manduchi,et al.  Current status of the European contribution to the Remote Data Access System of the ITER Remote Experimentation Centre , 2015 .

[13]  T. Yamamoto,et al.  Remote participation for LHD experiments , 2006 .

[14]  W. Suttrop,et al.  Remote participation at JET Task Force work: users’ experience , 2002 .

[15]  J. Harris,et al.  Visible spectroscopy diagnostics for tungsten source assessment in the WEST tokamak: First measurements. , 2018, The Review of scientific instruments.

[16]  K. Iwasaki,et al.  Development of environment for remote participation in fusion research on JT-60 , 2004 .

[17]  Thomas W. Fredian,et al.  Visions for data management and remote collaboration for ITER , 2005 .

[18]  Norihiro Nakajima,et al.  Status of the ITER remote experimentation centre , 2018 .

[19]  Shunji Abe,et al.  High-performance data transfer for full data replication between iter and the remote experimentation centre , 2019, Fusion Engineering and Design.

[20]  David P. Schissel,et al.  Grid computing and collaboration technology in support of fusion energy sciences , 2005 .

[21]  Shigeo Urushidani,et al.  A TCP/IP-based constant-bit-rate file transfer protocol and its extension to multipoint data delivery , 2014 .

[22]  T. Yamamoto,et al.  Configuration of the virtual laboratory for fusion researches in Japan , 2010 .

[23]  C. Gil,et al.  The WEST project: Testing ITER divertor high heat flux component technology in a steady state tokamak environment , 2014 .

[24]  G. Abla,et al.  A new remote control room for tokamak operations , 2012 .

[25]  Norihiro Nakajima,et al.  MDSplus remote data access over high latency connections , 2018 .

[26]  Gergö Pokol,et al.  Multi-mode remote participation on the GOLEM tokamak , 2011 .

[27]  P. Moreau,et al.  Design and status of the new WEST IR thermography system , 2018, Fusion Engineering and Design.

[28]  Takahisa Ozeki,et al.  Plan of ITER remote experimentation center , 2014 .

[29]  Makoto Hasegawa,et al.  Fusion virtual laboratory: The experiments’ collaboration platform in Japan , 2012 .

[30]  B. P. Duval,et al.  Design and first applications of the ITER integrated modelling & analysis suite , 2015 .

[31]  T. Szabolics,et al.  Wendelstein 7-X Near Real-Time Image Diagnostic System for Plasma-Facing Components Protection , 2018 .

[32]  Q. Peng,et al.  Recent enhancements to analyzed data acquisition and remote participation at the DIII-D National Fusion Facility , 2001 .

[33]  V. Schmidt,et al.  Remote participation technical infrastructure for the JET facilities under EFDA , 2001 .

[34]  B. Xiao,et al.  The design of remote participation platform for EAST plasma control , 2016 .

[35]  F. Escourbiac,et al.  Development of tungsten divertor components for ITER in Japan , 2018, Fusion Engineering and Design.

[36]  David P. Schissel The collaborative tokamak control room , 2006 .

[37]  E. N. Coviello,et al.  Remote third shift EAST operation: a new paradigm , 2017 .