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Buried crack reconstruction through far-field electromagnetic inverse scattering measurement

机译:通过远场电磁逆散射测量进行地埋裂缝重建

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摘要

An alternative approach to common methods in NDT for detection and identification of buried rectangular cracks on PEC surface is introduced. Goals are reached by solving a far-field inverse scattering problem. This approach enables us to reconstruct dielectric filled cracks under one or more dielectric layers with no need to touch the surface by any probes, but rather by measurements in the far-field of an antenna array. Suggested solution is applied by both TE_Z and TM_Z polarizations to two-dimensional structures with various crack's depth-to-width ratios; approximations for long three-dimensional structures. PSO and DE optimizers are used to solve the inverse scattering problem and both optimizers contain FDTD technique as their scattering problem solver.
机译:介绍了无损检测中用于检测和识别PEC表面矩形矩形裂缝的常用方法的另一种方法。通过解决远场逆散射问题可以达到目标。这种方法使我们能够在一个或多个介电层下重建介电填充的裂缝,而无需通过任何探针接触表面,而是通过在天线阵列的远场中进行测量。建议的解决方案是将TE_Z和TM_Z极化同时应用于具有不同裂缝深宽比的二维结构。长三维结构的近似值。 PSO和DE优化器用于解决逆散射问题,并且两个优化器均包含FDTD技术作为其散射问题求解器。

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