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将最小费希尔正则化层析成像技术引入COMPASS托卡马克的AXUV和软X射线诊断系统。

Introducing minimum Fisher regularisation tomography to AXUV and soft x-ray diagnostic systems of the COMPASS tokamak.

作者信息

Mlynar J, Imrisek M, Weinzettl V, Odstrcil M, Havlicek J, Janky F, Alper B, Murari A

机构信息

Institute of Plasma Physics AS CR, Association EURATOM-IPP.CR, Prague, Czech Republic.

出版信息

Rev Sci Instrum. 2012 Oct;83(10):10E531. doi: 10.1063/1.4738648.

Abstract

The contribution focuses on plasma tomography via the minimum Fisher regularisation (MFR) algorithm applied on data from the recently commissioned tomographic diagnostics on the COMPASS tokamak. The MFR expertise is based on previous applications at Joint European Torus (JET), as exemplified in a new case study of the plasma position analyses based on JET soft x-ray (SXR) tomographic reconstruction. Subsequent application of the MFR algorithm on COMPASS data from cameras with absolute extreme ultraviolet (AXUV) photodiodes disclosed a peaked radiating region near the limiter. Moreover, its time evolution indicates transient plasma edge cooling following a radial plasma shift. In the SXR data, MFR demonstrated that a high resolution plasma positioning independent of the magnetic diagnostics would be possible provided that a proper calibration of the cameras on an x-ray source is undertaken.

摘要

该贡献聚焦于通过最小费希尔正则化(MFR)算法进行的等离子体断层扫描,该算法应用于来自最近在COMPASS托卡马克上启用的断层诊断数据。MFR专业知识基于先前在欧洲联合环面(JET)上的应用,这在基于JET软X射线(SXR)断层重建的等离子体位置分析的新案例研究中得到了体现。随后,将MFR算法应用于来自配备绝对极紫外(AXUV)光电二极管的相机的COMPASS数据,揭示了限流器附近的一个辐射峰值区域。此外,其时间演变表明在径向等离子体位移后等离子体边缘出现瞬态冷却。在SXR数据中,MFR表明,只要对相机在X射线源上进行适当校准,就有可能实现独立于磁诊断的高分辨率等离子体定位。

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