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Investigation of inversion methods for calculation of soft X-ray-based plasma position and its consistency with magneticall determined position on tokamaks

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    0471067 - ÚFP 2017 RIV US eng A - Abstract
    Imríšek, Martin - Mlynář, Jan - Odstrčil, T. - Odstrčil, M. - Svoboda, J. - Löffelmann, V. - Ficker, Ondřej - Weinzettl, Vladimír - Hron, Martin - Pánek, Radomír
    Investigation of inversion methods for calculation of soft X-ray-based plasma position and its consistency with magneticall determined position on tokamaks.
    Bulletin of the American Physical Society. Vol. 18. San Jose: American Physical Society, 2016. s. 112. ISSN 0003-0503.
    [APS 58th Annual Meeting of the APS Division of Plasma Physics /58./. 31.10.2016-04.11.2016, San Jose, California]
    R&D Projects: GA MŠMT LG14002
    Institutional support: RVO:61389021
    Keywords : plasma position * tomography * soft x-ray * Tikhonov regularization
    Subject RIV: BL - Plasma and Gas Discharge Physics

    Distribution of soft X-ray (SXR) radiation in tokamak plasma can be reconstructed via tomography from line integrated measurements. The center of mass of the SXR distribution gives reliable information about plasma position assuming a
    primary source being bremsstrahlung. The Tikhonov regularization constrained by the minimum Fisher information is often applied to
    solve the ill-posed and underdetermined plasma tomography. There are two ways how to apply this method on large datasets: to use either a rapid version that process all time slices simultaneously or linear inversion methods which provide the center of radiation
    as a scalar product of the measured data and precomputed weight vector. Here, robustness, reliability and computational time of various methods of the calculation of the center of SXR emissivity are compared on modeled and real data. Furthermore, consistency of the magnetic and SXR plasma position influenced by the plasma shape and impurities is analyzed and discussed.

    Permanent Link: http://hdl.handle.net/11104/0268528

     
     
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