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The spectral properties of the magnetic polarizability tensor for metallic object characterisation

机译:金属物体表征磁极化张量的光谱特性

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The measurement of time-harmonic perturbed field data, at a range of frequencies, is beneficial for practical metal detection, where the goal is to locate and identify hidden targets. In particular, these benefits are realised when frequency-dependent magnetic polarizability tensors (MPTs) are used to provide an economical characterisation of conducting permeable objects, and a dictionary-based classifier is employed. However, despite the advantages shown in dictionary-based classifiers, the behaviour of the MPT coefficients with frequency is not properly understood. In this paper, we rigorously analyse, for the first time, the spectral properties of the coefficients of the MPT. This analysis has the potential to improve existing algorithms and design new approaches for object location and identification in metal detection. Our analysis also enables the response transient response from a conducting permeable object to be predicted for more general forms of excitation.
机译:在一系列频率下测量时间谐波扰动场数据是有益的实用金属检测,其中目标是定位和识别隐藏的目标。 特别地,当使用频率相关的磁极化性张量(MPTS)来提供对传导可渗透物体的经济表征,并且采用基于字典的分类器时,实现这些益处。 然而,尽管在基于字典的分类器中显示的优点,但不正确理解MPT系数的MPT系数的行为。 在本文中,我们首次严格分析MPT系数的谱特性。 该分析有可能改善现有算法和设计对象位置的新方法和金属检测中的识别方法。 我们的分析还使得能够从导电的透水对象中响应响应瞬态响应,以预测更一般的激励形式。

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