Results from the further development of CGI inversion on simulation and field data systems

Á. Gyulai, E. Turai, M. K. Baracza, Endre Nádasi, George Dankó
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引用次数: 0

Abstract

A new series expansion-based method, the Combined Geoelectric Weighted Inversion (CGWI) procedure is presented and tested by using synthetic and in-field measured datasets. The method is an improved version of the Combined Geoelectric Inversion (CGI) robustified by involving Cauchy-Steiner weights in an Iteratively Reweighted Least Squares technique. The new procedure is compared to the Fourier series expansion-based 1.5D and the CGI methods as well as to the broadly applied RES2DINV inversion procedure. The field measurements are performed during stone exploration in an active quarry on the south-western slopes of the Mátra mountains, in northern Hungary. It is shown that the CGWI method gives stable and robust parameter estimation with acceptable accuracy. The comparison with other inversion methods is based on data distances, estimation errors and correlation parameters calculated on the base of the parameter correlation matrix.
在模拟和实地数据系统上进一步开发 CGI 反演的结果
提出了一种基于序列扩展的新方法--组合地电加权反演(CGWI)程序,并使用合成数据集和现场测量数据集进行了测试。该方法是组合地电反演(CGI)的改进版,在迭代加权最小二乘法技术中加入了考奇-斯泰纳权重。新程序与基于傅立叶级数展开的 1.5D 和 CGI 方法以及广泛应用的 RES2DINV 反演程序进行了比较。实地测量是在匈牙利北部马特拉山西南山坡的一个活跃采石场进行的石料勘探过程中进行的。结果表明,CGWI 方法可提供稳定、可靠的参数估计,其准确性可以接受。与其他反演方法的比较基于数据距离、估计误差和根据参数相关矩阵计算的相关参数。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Central European Geology
Central European Geology Earth and Planetary Sciences-Geology
CiteScore
1.40
自引率
0.00%
发文量
8
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