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Development on Electromagnetic Impedance Function Modeling and Its Estimation

机译:电磁阻抗函数建模的开发及其估算

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Today the Electromagnetic methods such as magnetotellurics (MT) and controlled sources audio MT (CSAMT) is used in a broad variety of applications. Its usefulness in poor seismic areas and its negligible environmental impact are integral parts of effective exploration at minimum cost. As exploration was forced into more difficult areas, the importance of MT and CSAMT, in conjunction with other techniques, has tended to grow continuously. However, there are obviously important and difficult problems remaining to be solved concerning our ability to collect process and interpret MT as well as CSAMT in complex 3D structural environments. This talk aim at reviewing and discussing the recent development on MT as well as CSAMT impedance functions modeling, and also some improvements on estimation procedures for the corresponding impedance functions. In MT impedance modeling, research efforts focus on developing numerical method for computing the impedance functions of three dimensionally (3-D) earth resistivity models. On that reason, 3-D finite elements numerical modeling for the impedances is developed based on edge element method. Whereas, in the CSAMT case, the efforts were focused to accomplish the non-plane wave problem in the corresponding impedance functions. Concerning estimation of MT and CSAMT impedance functions, researches were focused on improving quality of the estimates. On that objective, non-linear regression approach based on the robust M-estimators and the Hilbert transform operating on the causal transfer functions, were used to dealing with outliers (abnormal data) which are frequently superimposed on a normal ambient MT as well as CSAMT noise fields. As validated, the proposed MT impedance modeling method gives acceptable results for standard three dimensional resistivity models. Whilst, the full solution based modeling that accommodate the non-plane wave effect for CSAMT impedances is applied for all measurement zones, including near-, transition-as well as the far-field zones, and consequently the plane wave correction is no longer needed for the impedances. In the resulting robust impedance estimates, outlier contamination is removed and the self consistency between the real and imaginary parts of the impedance estimates is guaranteed. Using synthetic and real MT data, it is shown that the proposed robust estimation methods always yield impedance estimates which are better than the conventional least square (LS) estimation, even under condition of severe noise contamination. A recent development on the constrained robust CSAMT impedance estimation is also discussed. By using synthetic CSAMT data it is demonstrated that the proposed methods can produce usable CSAMT transfer functions for all measurement zones.
机译:如今,电磁方法如Magnetellurics(MT)和受控源音频MT(CSAMT)的应用在广泛的应用中使用。其在劣势地震区的有用性及其可忽略不计的环境影响是最低成本的有效勘探的组成部分。由于勘探被迫进入更困难的领域,Mt和Csamt与其他技术相结合的重要性往往不断增长。然而,有关我们在复杂的3D结构环境中收集过程和解释MT以及CSAMT的能力,还存在明显的重要和困难问题。这次谈话旨在审查和讨论MT的最新发展以及CSAMT阻抗功能建模,以及对应阻抗函数的估算程序的一些改进。在MT阻抗建模中,研究努力专注于开发用于计算三维(3-D)接地电阻率模型的阻抗函数的数值方法。因此,基于边缘元件方法开发了3-D有限元的阻抗数值模型。虽然,在CSAMT案例中,努力集中于在相应的阻抗函数中实现非平面波问题。关于MT和CSAMT阻抗功能的估计,研究专注于提高估算质量。在该目的,基于强大的M估算器的非线性回归方法和在因果传递函数上运行的Hilbert变换,用于处理经常叠加在正常环境MT以及CSAMT上的异常值(异常数据)噪音字段。如验证,所提出的MT阻抗建模方法为标准三维电阻率模型提供了可接受的结果。虽然,适用于CSAMT阻抗的非平面波效应的完整解决方案适用于所有测量区域,包括近,转换以及远场区域,因此不再需要平面波校正对于阻抗。在由此产生的鲁棒阻抗估计中,消除了异常污染,并且保证了阻抗估计的实部和虚部之间的自我一致性。使用合成和实际MT数据,示出了所提出的稳定估计方法始终屈服于常规最小二乘(LS)估计的阻抗估计,即使在严重噪声污染的条件下也是如此。还讨论了最新的受限稳健CSAMT阻抗估计的发展。通过使用合成CSAMT数据,证明了所提出的方法可以为所有测量区域产生可用的CSAMT传输功能。

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