同时反演土体和浸没物的电磁参数

D. Kakulia, K. Tavzarashvili, G. Chelidze, F. Shubitidze
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引用次数: 3

摘要

本文介绍了同时反演土体和浸没物电磁参数的数值模拟结果和算法。在已知问题所有几何参数的情况下,利用电磁感应(EMI)传感数据进行反演。地雷和未爆弹药等地下目标的识别程序在先验参数确定的情况下具有较高的精度。特别是当物体及其周围介质之间的相互作用作用显著,而不同时间产生的未爆弹药材料没有确切信息时。将辅助源法(MAS)与高斯-牛顿最小化算法相结合,提出了同时反演目标和周围介质电磁参数的优化方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Inversion of soil's and immersed objects's electromagnetic parameters symultaneously
This paper presents results of numerical simulation and algorithm of simultaneous inversion of soil's and immersed object's electromagnetic parameters. Inversion is performed from data of electromagnetic induction (EMI) sensing, when all other geometric parameters of the problem are known. Discrimination procedure of subsurface objects such as landmines and unexploded ordnances (UXO) accomplishes higher accuracy when mentioned parameters are determined a priori. A specially, when interaction effects between object its surrounding media is significant and there is no exact information about materials of UXO produced in different time. Combining Method of Auxiliary Sources (MAS) with Gauss-Newton minimization algorithm, we developed optimization methodology that simultaneously inverts for the EM parameters of both the object and the surrounding medium.
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