在JT-60SA中使用L1正则化对视线受限的MHD模式进行软x射线断层扫描。

IF 1.3 4区 工程技术 Q3 INSTRUMENTS & INSTRUMENTATION
T Bando, M Takechi, S Ohdachi
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引用次数: 0

摘要

软x射线(SX)断层扫描在聚变研究中是一种有用的诊断方法,多通道SX诊断仪将安装在世界上最大的细长托卡马克JT-60SA上。但在JT-60SA的SX诊断中,只会从等离子体的低场侧和上场侧观察等离子体;瞄准线是有限的,这将在未来的设备以及JT-60SA中很常见。这种有限的视线不适合用于SX层析成像研究磁流体动力学(MHD)模式的空间结构,因为等离子体信息的不足会在重建的SX剖面中产生伪影。减少伪像的解决方案之一是采用L1正则化,它给出了基本和稀疏的贡献[Kaptanoglu等人,物理。等离子体学报,2003,17(4):559 - 564。在本研究中,作为第一个主题,在JT-60SA的高beta场景中,使用传统的L2正则化来研究L1正则化在有限视线的SX断层扫描中减少伪影的适用性,该场景会出现MHD模式。由于傅里叶-贝塞尔级数(FBS)显式地具有极向傅里叶模态,因此这里采用FBS作为一系列基函数。FBS的缺点是需要精确的最后封闭通量面(LCFS)内平衡;需要内部测量,如运动斯塔克效应测量,这在整个放电过程中并不总是可用的。本研究的第二个主题是探索其他合适的基函数来研究细长托卡马克等离子体中MHD模式的空间结构。在这里,我们引入斋藤的拉普拉斯特征函数(LEF)。如果给定LCFS,并且期望LEF显示显式的极向傅里叶模式,则可以计算Saito的LEF。由于用磁测量计算LCFS是等离子体操作的基本任务,斋藤的LEF可以在任何时候使用。我们的研究表明,L1正则化可以有效地改善SX层析成像,而传统的L2正则化具有FBS/LEF,并且可以有效地解决融合装置中的其他层析成像问题。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Soft x-ray tomography using L1 regularization for MHD modes with limited sight lines in JT-60SA.

Soft x-ray (SX) tomography is a useful diagnostic in fusion research, and a multi-channel SX diagnostic will be installed in JT-60SA, the largest elongated tokamak in the world. However, in the SX diagnostic of JT-60SA, plasmas will be only viewed from the low field side and the upper side of plasmas; the sight lines are limited, which would be common in future devices as well as JT-60SA. This kind of limited sight lines is not preferred for SX tomography to investigate the spatial structure of magnetohydrodynamics (MHD) modes because inadequate information of plasmas makes artifacts in the reconstructed SX profiles. One of the solutions to reduce the artifacts is to employ L1 regularization, which gives the essential and sparse contributions [Kaptanoglu et al., Phys. Plasmas 30, 033906 (2023)]. In this study, as a first topic, the applicability of L1 regularization to reduce the artifacts in SX tomography with limited sight lines is investigated with traditional L2 regularization for a high beta scenario of JT-60SA where MHD modes would occur. Here, as a series of basis functions, the Fourier-Bessel series (FBS) is employed because FBS has the poloidal Fourier modes explicitly. A disadvantage of FBS is that the accurate equilibrium inside the last closed flux surface (LCFS) is needed; interior measurement such as the motional Stark effect measurement is required, which is not always available during a whole discharge. The second topic of this study is to investigate other appropriate basis functions to study the spatial structure of MHD modes in elongated tokamak plasmas. Here, we introduce Saito's Laplacian eigenfunction (LEF). Saito's LEF can be calculated if LCFS is given and the LEF is expected to show the explicit poloidal Fourier mode. Because the calculation of LCFS with magnetic measurements is a basic task of plasma operations, Saito's LEF may be used anytime. Our investigation showed that L1 regularization can strongly improve the SX tomography with the traditional L2 regularization having FBS/LEF and would be effective against other tomographic problems in fusion devices.

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来源期刊
Review of Scientific Instruments
Review of Scientific Instruments 工程技术-物理:应用
CiteScore
3.00
自引率
12.50%
发文量
758
审稿时长
2.6 months
期刊介绍: Review of Scientific Instruments, is committed to the publication of advances in scientific instruments, apparatuses, and techniques. RSI seeks to meet the needs of engineers and scientists in physics, chemistry, and the life sciences.
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