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    Created: 2012-03-12 15:38:31
@Article{1352,
      AUTHOR = {Vrancken, M. and Lerche, E. and Blackman, T. and Durodi{\'e}, F. and Evrard, M. and Graham, M. and Jacquet, PH. and Kaye, Alan S. and Mayoral, Marie-Line and Nightingale, M. P. S. and Ongena, J. and Van Eester, Dirk and Van Schoor, M.},
      TITLE = {{Performance of the Scattering Matrix Arc Detection System on the JET ITER-like ICRF antenna}},
      YEAR = {2011},
      MONTH = {October},
      JOURNAL = {Fusion Engineering and Design},
      VOLUME = {86},
      NUMBER = {6-8},
      PAGES = {522},
      URL = {http://dx.doi.org/10.1016/j.fusengdes.2011.02.056},
      ABSTRACT = {Ion Cyclotron Radio Frequency (ICRF) antennas operating under high voltage to couple high power to fusion plasmas are at risk of electrical arcing. The standard Voltage Standing Wave Ratio (VSWR) system does not protect low impedance areas, which are used in antennas to achieve load tolerance to variations in plasma loading during Edge Localised Modes (ELMs). The Scattering Matrix Arc Detection System (SMAD) was designed to create additional protection for these areas, and 4 complete systems were implemented and tested on the ITER-like antenna (ILA) on JET. This paper describes the performance under relevant experimental conditions of load tolerance and/or high voltage and electrical arcing causing generator trip events.},
      NOTE = {Proceedings of the 26th Symposium of Fusion Technology (SOFT-26) - Oporto (Portugal) - 27 September/10 October 2010},
      ANNOTE = {CITEULIKE-ARTICLE-ID : 9008346}
}
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