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Automated optimization of electrode locations for electrical resistivity tomography

机译:电阻率断层扫描电极位置的自动优化

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摘要

This work describes the automated search for optimal electrode locations that will improve reconstructions of a 2D electrical resistivity tomography problem within a meta inverse framework. The meta inverse framework was incorporated into a finite integration forward solver developed for simulating the measurement data, and into an inverse solver developed for reconstructing the resistivity distribution within the subsurface. The meta inverse framework solver then searched to find optimal electrode locations at which best reconstructions of the resistivity distribution within the subsurface could be obtained. The numerical results obtained from applying the forward, inverse and meta inverse solvers to search for resistance anomalies in an electrical resistivity tomography problem are presented. The results show that these solvers are successful for simulations, reconstructions, and for determining the optimal electrode locations at which the best reconstruction of the resistivity distribution can be obtained.
机译:这项工作描述了对最佳电极位置的自动搜索,这将改善元逆框架内 2D 电阻率断层扫描问题的重建。元逆框架被整合到为模拟测量数据而开发的有限积分正演求解器中,以及为重建地下电阻率分布而开发的逆求解器中。然后,元逆框架求解器进行搜索,以找到最佳电极位置,从而获得地下电阻率分布的最佳重建。本文应用正向、逆向和元逆求解器搜索电阻率层析成像问题中的电阻异常所得到的数值结果.结果表明,这些求解器在模拟、重构和确定最佳电极位置方面是成功的,在这些位置上可以获得电阻率分布的最佳重构。

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