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An Aeromagnetic Compensation Method Based on a Multimodel for Mitigating Multicollinearity

机译:基于多模态的气磁补偿方法,用于减轻多墨性

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摘要

Aeromagnetic surveys play an important role in geophysical exploration and many other fields. In many applications, magnetometers are installed aboard an aircraft to survey large areas. Due to its composition, an aircraft has its own magnetic field, which degrades the reliability of the measurements, and thus a technique (named aeromagnetic compensation) that reduces the magnetic interference field effect is required. Commonly, based on the Tolles−Lawson model, this issue is solved as a linear regression problem. However, multicollinearity, which refers to the case when more than two model variables are highly linearly related, creates accuracy problems when estimating the model coefficients. The analysis in this study indicates that the variables that cause multicollinearity are related to the flight heading. To take this point into account, a multimodel compensation method is proposed. By selecting the variables that contribute less to the multicollinearity, different sub-models are built to describe the magnetic interference of the aircraft when flying in different orientations. This method restricts the impact of multicollinearity and improves the reliability of the measurements. Compared with the existing methods, the proposed method reduces the interference field more effectively, which is verified by a set of airborne tests.
机译:航空磁性调查在地球物理勘探和许多其他领域发挥着重要作用。在许多应用中,磁力计安装在一架飞机上,以调查大区域。由于其组成,飞机具有其自身的磁场,这使得测量的可靠性降低,因此需要降低磁干扰场效应的技术(命名的航空磁性补偿)。通常,基于Tolles-Lawson模型,这个问题被解除为线性回归问题。然而,多型性是指多于两个模型变量的情况高度线性相关的情况,在估计模型系数时会产生精度问题。本研究中的分析表明,导致多型性度的变量与飞行标题有关。要考虑到这一点,提出了一种多模型补偿方法。通过选择较少贡献的变量,可以构建不同的子模型,以描述在不同方向上飞行时飞机的磁干扰。该方法限制了多色性的影响,提高了测量的可靠性。与现有方法相比,所提出的方法更有效地降低了干扰场,这通过一组空气传播测试验证。

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