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Dimensionality, Coordinate System and Reference Frame for Analysis of In-Situ Space Plasma and Field Data

机译:用于分析原位空间等离子体和现场数据的维度,坐标系和参考框架

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In the analysis of in-situ space plasma and field data, an establishment of the coordinate system and the frame of reference, helps us greatly simplify a given problem and provides the framework that enables a clear understanding of physical processes by ordering the experimental data. For example, one of the most important tasks of space data analysis is to compare the data with simulations and theory, which is facilitated by an appropriate choice of coordinate system and reference frame. While in simulations and theoretical work the establishment of the coordinate system (generally based on the dimensionality or dimension number of the field quantities being studied) and the reference frame (normally moving with the structure of interest) is often straightforward, in space data analysis these are not defined a priori, and need to be deduced from an analysis of the data itself. Although various ways of building a dimensionality-based (D-based) coordinate system (i.e., one that takes account of the dimensionality, e.g., 1-D, 2-D, or 3-D, of the observed system/field), and a reference frame moving along with the structure have been used in space plasma data analysis for several decades, in recent years some noteworthy approaches have been proposed. In this paper, we will review the past and recent approaches in space data analysis for the determination of a structure's dimensionality and the building of D-based coordinate system and a proper moving frame, from which one can directly compare with simulations and theory. Along with the determination of such coordinate systems and proper frame, the variant axis/normal of 1-D (or planar) structures, and the invariant axis of 2-D structures are determined and the proper frame velocity for moving structures is found. These are found either directly or indirectly through the definition of dimensionality.We therefore emphasize that the determination of dimensionality of a structure is crucial for choosing the most appropriat
机译:在分析原位空间等离子体和现场数据中,坐标系的建立和参考框架,帮助我们大大简化给定的问题,并提供了通过排序实验数据清楚地了解物理过程的框架。 For example, one of the most important tasks of space data analysis is to compare the data with simulations and theory, which is facilitated by an appropriate choice of coordinate system and reference frame.虽然在模拟和理论上的工作中建立坐标系(通常基于所研究的场数量的维度或维数)和参考帧(通常与感兴趣的结构移动)通常是简单的,但在空间数据分析中,这些未定义先验,并且需要从数据本身的分析中推断出来。虽然构建基于维度(基于D型)坐标系的各种方式(即,考虑观察到的系统/场的维度的维度,例如1-D,2-D或3-D),但是并且参考帧与结构一起移动已经在太空等离子体数据分析中使用了几十年,近年来已经提出了一些值得注意的方法。在本文中,我们将审查空间数据分析中的过去和最近的方法,以确定结构的维度和基于D的坐标系和适当的移动框架的构建,从中可以直接与模拟和理论比较。随着这种坐标系和适当的框架的确定,确定了1-D(或平面)结构的变体轴/正常,以及2-D结构的不变轴,并且找到了移动结构的适当帧速度。这些是直接或间接地通过维度的定义来发现。因此,我们强调,确定结构的维度的确定对于选择最适当的申请至关重要

著录项

  • 来源
    《Space Science Reviews》 |2019年第4期|共54页
  • 作者单位

    Shandong Provincial Key Laboratory of Optical Astronomy and Solar-Terrestrial Environment Institute of Space Sciences Shandong University Weihai China;

    Shandong Provincial Key Laboratory of Optical Astronomy and Solar-Terrestrial Environment Institute of Space Sciences Shandong University Weihai China;

    Shandong Provincial Key Laboratory of Optical Astronomy and Solar-Terrestrial Environment Institute of Space Sciences Shandong University Weihai China;

    Institute of Space and Astronautical Science Japan Aerospace Exploration Agency Sagamihara Japan;

    Shandong Provincial Key Laboratory of Optical Astronomy and Solar-Terrestrial Environment Institute of Space Sciences Shandong University Weihai China;

    School of Earth and Space Sciences Peking University Beijing China;

    Space Science Institute School of Astronautics Beihang University Beijing China;

    Key Laboratory of Earth and Planetary Physics Institute of Geology and Geophysics Chinese Academy of Sciences Beijing 100029 China;

    Shandong Provincial Key Laboratory of Optical Astronomy and Solar-Terrestrial Environment Institute of Space Sciences Shandong University Weihai China;

    School of Earth and Space Sciences Peking University Beijing China;

    Key Laboratory of Earth and Planetary Physics Institute of Geology and Geophysics Chinese Academy of Sciences Beijing 100029 China;

    School of Earth and Space Sciences Peking University Beijing China;

    School of Earth and Space Sciences Peking University Beijing China;

    Sate Key Laboratory of Space Weather Chinese Academy of Sciences Beijing China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 航空;
  • 关键词

    Dimensionality; Dimension number; Coordinate system; Reference frame; Normal; Variant/invariant axis; Flux rope; Current sheet; Magnetic reconnection; Reconstruction;

    机译:维数;尺寸;坐标系;参考框架;正常;变体/不变轴;助焊剂绳;当前纸张;磁性重建;重建;

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