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Wideband Models for the Electromagnetic Induction Signatures of Thin Conducting Shells

机译:薄导电壳电磁感应特征的宽带模型

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Wideband electromagnetic induction sensors have been shown to be more effective than traditional metal detectors at identifying metallic targets of interest when buried near abundant metallic clutter. A promising strategy for performing target identification using wideband data relies on characterizing the target response using a magnetic polarizability tensor (MPT) that is a function of frequency. In this paper, a surface integral method is presented for deriving the MPT in singularity expansion form using a modal decomposition. The method is verified by comparing the singularity expansion for a spherical shell to a derived analytical solution. The expansion coefficients for cylindrical tubes, of various aspect ratios, are compared to experimental results, showing good agreement. Finally, expansion coefficients are given for a disk and are compared to other numerical results.
机译:宽带电磁感应传感器在埋入大量金属杂物附近时,在识别感兴趣的金属目标方面比传统的金属探测器更有效。使用宽带数据执行目标识别的一种有前途的策略依赖于使用作为频率函数的磁极化张量(MPT)表征目标响应。本文提出了一种采用模态分解的奇异展开形式的MPT的表面积分方法。通过将球壳的奇异展开与导出的解析解进行比较来验证该方法。将不同纵横比的圆柱管的膨胀系数与实验结果进行了比较,显示出很好的一致性。最后,给出了磁盘的膨胀系数,并将其与其他数值结果进行比较。

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