A. Asadian, A. Moradzadeh, A. Arab-Amiri, A. N. Kalateh, D. Rajabi
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引用次数: 1
摘要
直升机载电磁(HEM)频域勘探方法是一种广泛应用于广大粗糙地区的机载电磁(AEM)成像技术。HEM方法产生的大量数字化数据需要一种高效、准确的反演算法。一般来说,第一步HEM数据的逆建模需要正演建模算法提供的精确而高效的技术。灵敏度矩阵或雅可比矩阵的精确计算也至关重要。因此,本研究的主要目标是设计一种有效的算法,用于使用快速汉克尔变换(FHTs)对水平共面(HCP)线圈配置的HEM频域数据进行正演建模。本文还尝试用解析法推导出雅可比矩阵所需的方程。为了实现这些目标,给出了一种同时计算正演计算和灵敏度矩阵的详细算法。最后,通过两个综合模型,验证了所提算法的计算精度。对比表明,正演模拟得到的结果与Simon et al.(2009)报道的四层模型的结果高度一致。此外,德国BGR中心正在使用两层模型的灵敏度矩阵结果与从软件中获得的结果进行比较,表明所提出的算法在计算该矩阵时具有很高的精度。
Calculation of One-dimensional Forward Modelling of Helicopter- borne Electromagnetic Data and a Sensitivity Matrix Using Fast Hankel Transforms
The helicopter-borne electromagnetic (HEM) frequency-domain exploration method is an airborne electromagnetic (AEM) technique that is widely used for vast and rough areas for resistivity imaging. The vast amount of digitized data flowing from the HEM method requires an efficient and accurate inversion algorithm. Generally, the inverse modelling of HEM data in the first step requires a precise and efficient technique provided by a forward modelling algorithm. The exact calculation of the sensitivity matrix or Jacobian is also of the utmost importance. As such, the main objective of this study is to design an efficient algorithm for the forward modelling of HEM frequency-domain data for the configuration of horizontal coplanar (HCP) coils using fast Hankel transforms (FHTs). An attempt is also made to use an analytical approach to derive the required equations for the Jacobian matrix. To achieve these goals, an elaborated algorithm for the simultaneous calculation of the forward computation and sensitivity matrix is provided. Finally, using two synthetic models, the accuracy of the calculations of the proposed algorithm is verified. A comparison indicates that the obtained results of forward modelling are highly consistent with those reported in Simon et al. (2009) for a four-layer model. Furthermore, the comparison of the results for the sensitivity matrix for a two-layer model with those obtained from software is being used by the BGR Centre in Germany, showing that the proposed algorithm enjoys a high degree of accuracy in calculating this matrix.