Electromagnetic Imaging for Non-Intrusive Evaluation in Civil Engineering

G. Bozza, C. Estatico, M. Pastorino, A. Randazzo
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引用次数: 2

Abstract

In this paper an imaging approach for non-intrusive evaluation of civil structures is discussed. The approach is based on the inversion of scattering data measured in near field. Cylindrical geometries are considered under transverse magnetic (TM) illumination conditions. The integral relationships of the inverse scattering problem are discretized and solved by an Inexact-Newton method, which has been found to be very effective in solving ill-posed inverse problems. The approach takes into account the nonlinear nature of the electromagnetic inverse scattering problem, since no approximations are applied (except the ones related to the discretization of the continuous model). After the inversion of the measured data, the imaging method provides images of the dielectric properties of the cross section of the civil structures under test. The mathematical formulation of the method is briefly discussed and the results of numerical simulations are reported. Simplified geometrical configurations are considered, but with dielectric properties close to those of real materials employed in the field of civil engineering.
电磁成像在土木工程中的非侵入性评价
本文讨论了一种用于土木结构非侵入性评估的成像方法。该方法基于近场散射数据的反演。圆柱几何考虑在横向磁(TM)照明条件下。对反散射问题的积分关系进行离散化,并采用非精确牛顿法求解,该方法是求解病态反问题的有效方法。该方法考虑到电磁逆散射问题的非线性性质,因为没有应用近似(除了与连续模型离散化有关的近似)。成像方法对实测数据进行反演后,提供被测土木结构截面的介电特性图像。简要讨论了该方法的数学表达式,并给出了数值模拟结果。考虑了简化的几何结构,但其介电性能接近于土木工程领域中使用的实际材料。
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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