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首页> 外文期刊>Exploration Geophysics >Correction and compensation of an airborne fluxgate magnetic tensor gradiometer
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Correction and compensation of an airborne fluxgate magnetic tensor gradiometer

机译:机载磁通门磁张量梯度仪的校正和补偿

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摘要

An airborne fluxgate magnetic tensor gradiometer is built on fluxgates to measure directional derivatives of the magnetic field. It has been used to carry out many geophysical exploration programs quickly and efficiently. However, two key issues greatly reduce the data quality of a tensor gradiometer. One is that the fluxgate magnetic tensor gradiometer suffers various errors, such as scale drift, non-orthogonality, misalignment, zero offset, dynamic, and nonlinear errors of individual fluxgates, along with differences between characteristics of fluxgates. The other is that manoeuvring an aircraft flying in the geomagnetic field can generate magnetic interference effects on a tensor gradiometer. Regarding the common airborne fluxgate magnetic tensor gradiometer that has a cross-shaped structure, we have proposed the magnetic interference model of the aircraft and the error model of a single fluxgate. Then we have seamlessly combined these two models into the unified calibration model of a tensor gradiometer by a recursive method. Finally, we have simultaneously determined the correction coefficients and the magnetic properties of the aircraft by a calibration flight at high altitude in an area of low magnetic gradient. We have evaluated the performance of the proposed method through simulation and actual flight results using a microlight aircraft. The root-mean-square noise of each component has reached the level of less than 1.5 nT/m, and the improvement ratios are from 4096 to 17444 in terms of the measured field data of tensor components. The proposed method reduces the reliance of the installation on the aircraft and can easily be applied to other tensor gradiometers, such as airborne superconducting magnetic tensor gradiometers.
机译:机载磁通门磁张量梯度仪建立在磁通门上,以测量磁场的方向导数。它已被用来快速有效地执行许多地球物理勘探计划。但是,两个关键问题极大地降低了张量梯度仪的数据质量。一种是磁通门磁张量梯度仪遭受各种误差,例如单个磁通门的刻度漂移,非正交性,未对准,零偏移,动态和非线性误差,以及磁通门特性之间的差异。另一个是操纵在地磁场中飞行的飞机会在张量梯度仪上产生磁干扰效应。对于具有十字形结构的常见机载磁通门磁场张量梯度仪,我们提出了飞机的磁干扰模型和单个磁通门的误差模型。然后,我们通过递归方法将这两个模型无缝地组合到张量梯度仪的统一校准模型中。最后,我们通过在低磁梯度区域内的高空进行一次校准飞行,同时确定了飞机的校正系数和磁性能。我们已经通过仿真和使用微型飞机的实际飞行结果评估了所提出方法的性能。每个分量的均方根噪声已达到小于1.5 nT / m的水平,并且根据张量分量的实测数据,改进比率为4096至17444。所提出的方法减少了在飞机上安装的依赖,并且可以容易地应用于其他张量梯度计,例如机载超导磁张量梯度计。

著录项

  • 来源
    《Exploration Geophysics》 |2018年第05期|726-734|共9页
  • 作者单位

    Jilin Univ, Key Lab Geoexplorat Instruments, Minist Educ China, Changchun 130026, Jilin, Peoples R China;

    Jilin Univ, Key Lab Geoexplorat Instruments, Minist Educ China, Changchun 130026, Jilin, Peoples R China;

    Jilin Univ, Key Lab Geoexplorat Instruments, Minist Educ China, Changchun 130026, Jilin, Peoples R China;

    Jilin Univ, Key Lab Geoexplorat Instruments, Minist Educ China, Changchun 130026, Jilin, Peoples R China;

    Jilin Univ, Key Lab Geoexplorat Instruments, Minist Educ China, Changchun 130026, Jilin, Peoples R China;

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

    airborne; compensation; correction; fluxgate; magnetic tensor gradiometer;

    机译:机载;补偿;校正;磁闸;磁张量梯度仪;

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