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Characterisation of multiple conducting permeable objects in metal detection by polarizability tensors

机译:通过极化张量的金属检测中多种导电渗透物的表征

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Realistic applications in metal detection involve multiple inhomogeneous-conducting permeable objects, and the aim of this paper is to characterise such objects by polarizability tensors. We show that, for the eddy current model, the leading order terms for the perturbation in the magnetic field, due to the presence of N small conducting permeable homogeneous inclusions, comprises of a sum of N terms with each containing a complex symmetric rank 2 polarizability tensor. Each tensor contains information about the shape and material properties of one of the objects and is independent of its position. The asymptotic expansion we obtain extends a previously known result for a single isolated object and applies in situations where the object sizes are small and the objects are sufficiently well separated. We also obtain a second expansion that describes the perturbed magnetic field for inhomogeneous and closely spaced objects, which again characterises the objects by a complex symmetric rank 2 tensor. The tensor's coefficients can be computed by solving a vector valued transmission problem, and we include numerical examples to illustrate the agreement between the asymptotic formula describing the perturbed fields and the numerical prediction. We also include algorithms for the localisation and identification of multiple inhomogeneous objects.
机译:金属检测中的现实应用涉及多个不均匀导电的可渗透物体,并且本文的目的是通过极化张量来表征这些物体。我们表明,对于涡流模型,由于存在n小导电可渗透均匀夹杂物的磁场中扰动的前导顺序术语,包括N个术语的总和,每个术语包含复杂对称级别2的极化性张量。每个张量包含有关其中一个物体的形状和材料特性的信息,并且与其位置无关。我们获得的渐近膨胀延伸了单个隔离对象的先前已知的结果,并在物体尺寸小的情况下应用,物体足够好地分开。我们还获得了第二个扩展,其描述了用于不均匀和紧密间隔物体的扰动磁场,其再次通过复杂的对称秩2张量表征物体。可以通过求解矢量值传输问题来计算张量的系数,并且我们包括数字示例,以说明描述扰动场和数值预测的渐近公式之间的协议。我们还包括用于定位和识别多个不均匀物体的算法。

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