利用进化算法从单分量数据中重建矢量磁场

IF 0.7 4区 地球科学 Q4 GEOCHEMISTRY & GEOPHYSICS
R. A. Rytov, N. A. Usov, V. G. Petrov
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引用次数: 0

摘要

摘要 提出了一种简单的进化算法,用于根据其中一个分量的测量数据重建矢量异常磁场。该算法选择点磁偶极子组合的位置和磁矩,其总磁场以所需的精度近似于在地球表面已知高度的单分量磁场测量数据。通过这种方式获得的磁源分布可以重建磁场的所有三个分量。在这项研究中,利用了一种进化算法来解决从测量到的\({{H}_{x}}\)垂直分量数据重建磁场分量\({{H}_{x}}\)和\({{H}_{y}}\)的问题。此外,还提出了一个迭代程序,用于根据已知的地磁场异常分量数据计算磁场的\({{H}_{x}}\)、\({{H}_{y}}\)和\({{H}_{z}}\)分量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Vector Magnetic Field Reconstruction from Single-Component Data Using Evolutionary Algorithm

Vector Magnetic Field Reconstruction from Single-Component Data Using Evolutionary Algorithm

Vector Magnetic Field Reconstruction from Single-Component Data Using Evolutionary Algorithm

A simple evolutionary algorithm is proposed to reconstruct a vector anomalous magnetic field from measurement data of one of its components. The algorithm selects the positions and magnetic moments of an assembly of point magnetic dipoles, the total magnetic field of which approximates with the required accuracy the data of single-component magnetic measurements at a known height above the earth’s surface. The distribution of sources obtained in this manner enables the reconstruction of all three components of the magnetic field. In this study, an evolutionary algorithm was utilized to solve the problem of reconstructing the magnetic field components \({{H}_{x}}\) and \({{H}_{y}}\) from the measured \({{H}_{z}}\) vertical component data. Additionally, an iterative procedure was proposed for calculating the \({{H}_{x}}\), \({{H}_{y}}\) and \({{H}_{z}}\) components of the magnetic field from known data for the anomalous component of the geomagnetic field.

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来源期刊
Geomagnetism and Aeronomy
Geomagnetism and Aeronomy Earth and Planetary Sciences-Space and Planetary Science
CiteScore
1.30
自引率
33.30%
发文量
65
审稿时长
4-8 weeks
期刊介绍: Geomagnetism and Aeronomy is a bimonthly periodical that covers the fields of interplanetary space; geoeffective solar events; the magnetosphere; the ionosphere; the upper and middle atmosphere; the action of solar variability and activity on atmospheric parameters and climate; the main magnetic field and its secular variations, excursion, and inversion; and other related topics.
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