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One-dimensional upward continuation of the ground magnetic field disturbance using spherical elementary current systems

机译:利用球形基本电流系统对地磁场扰动的一维向上延续

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摘要

Ionospheric equivalent currents are defined as spherical sheet currents, which reproduce the observed magnetic disturbances below the ionosphere. One way of determining these currents is to place several so called spherical elementary current systems (SECS) in the ionospheric height and to solve an inversion problem for the amplitudes of these systems. In previous studies this method has been applied to two-dimensional data sets, having both latitudinal and longitudinal spatial coverage (2D SECS method). In this paper a one-dimensional variant of this method (1D SECS) is developed. The 1D SECS method can be used even in those situations where the data set is one dimensional, e.g. with one meridionally aligned magnetometer chain. The applicability of the 1D SECS method is tested using both synthetic and real data. It is found that in real situations the errors in the 1D SECS results are 5-10% in current density profiles and ~5% in integrated currents, when compared to the results of the more accurate 2D SECS method.
机译:电离层等效电流定义为球形薄层电流,该电流会重现电离层以下观测到的磁干扰。确定这些电流的一种方法是在电离层高度中放置几个​​所谓的球面基本电流系统(SECS),并解决这些系统振幅的反演问题。在以前的研究中,此方法已应用于具有纬度和纵向空间覆盖率的二维数据集(二维SECS方法)。在本文中,开发了该方法的一维变体(1D SECS)。一维SECS方法即使在数据集为一维的情况下也可以使用。带有一条经向对齐的磁力计链。一维SECS方法的适用性通过综合数据和真实数据进行了测试。发现在实际情况下,与更精确的2D SECS方法的结果相比,一维SECS结果的误差在电流密度曲线中为5-10%,在积分电流中约为5%。

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