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首页> 外文期刊>Review of Scientific Instruments >Introducing minimum Fisher regularisation tomography to AXUV and soft x-ray diagnostic systems of the COMPASS tokamak
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Introducing minimum Fisher regularisation tomography to AXUV and soft x-ray diagnostic systems of the COMPASS tokamak

机译:在AXUV和COMPASS Tokamak的软X射线诊断系统中引入最小Fisher正则化断层扫描

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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.
机译:该贡献主要通过最小费舍尔正则化(MFR)算法应用于等离子体断层扫描,该算法适用于COMPASS托卡马克上最近委托进行的断层诊断的数据。 MFR的专业知识基于联合欧洲圆环(JET)的先前应用,例如在基于JET软X射线(SXR)断层成像重建的血浆位置分析的新案例研究中得到了证明。 MFR算法在来自具​​有绝对极紫外(AXUV)光电二极管的相机的COMPASS数据上的后续应用显示了限制器附近的峰值辐射区域。此外,它的时间演变表明在径向等离子移动之后,瞬时的等离子边缘冷却。在SXR数据中,MFR证明,只要对X射线源上的摄像头进行适当的校准,便可以实现与磁诊断无关的高分辨率等离子体定位。

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