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Near-field microwave non-destructive testing for defect shape and material identification

机译:缺陷形状和材料识别的近场微波无损检测

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摘要

We propose a near-field approach to microwave non-destructive detection and evaluation of defects, which is based on electromagnetic (EM) numerical modeling of the forward problem and on an adjoint-variable approach to the calculation of the response Jacobians of the forward model. The measured response of the structure under test is matched to that of the forward model. The inverse least square problem is solved iteratively by an optimizer. The approach features high computational efficiency due to the use of adjoint-based response sensitivities, which are developed here to handle materials with complex permittivity. It allows the recovery of both shape and material parameters of the defect. Examples of defects in lossy media are considered. The numerical EM analysis is carried out with a frequency-domain solver based on the transmission line method. The initial discretization grid is preserved throughout the optimization iterations.
机译:我们提出了一种基于微波的无损检测和缺陷评估的近场方法,该方法基于正向问题的电磁(EM)数值建模,并且基于伴随变量方法来计算正向模型的响应雅可比矩阵。被测结构的测量响应与正向模型相匹配。最小二乘反问题由优化器迭代求解。由于使用了基于伴随的响应敏感度,因此该方法具有很高的计算效率,在此将其开发为处理具有复杂介电常数的材料。它可以恢复缺陷的形状和材料参数。考虑有损介质中的缺陷的示例。使用基于传输线方法的频域求解器进行数值EM分析。初始离散化网格在整个优化迭代过程中都得到保留。

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