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Iterative solution of the electromagnetic inverse scattering problem from the transient scattered field

机译:瞬态散射场迭代求解电磁逆散射问题

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This paper deals with an iterative approach to solve the electromagnetic inverse scattering problem from single view transient data. The measurement configuration consists in illuminating a two-dimensional scattering system with an electromagnetic transient source and in measuring the time domain response all around the investigated region. The aim is then to determine the electromagnetic properties of the target from the measurements. The problem is formulated in the frequency domain for a large number of frequencies, such that the incident pulse is accurately sampled, rather than in the time domain. The parameters of interest, namely, the relative permittivity and the conductivity profiles, are built up iteratively by minimizing a cost functional involving the discrepancy between the measured scattered fields and those that would be obtained via a forward model. Numerical examples are presented to prove the efficiency of the suggested method and its robustness against noise. The influence of the central frequency and of the bandwidth of the incident field on the achievable performances is also illustrated.
机译:本文提出了一种迭代方法,用于从单视图瞬态数据中解决电磁逆散射问题。测量配置包括用电磁瞬变源照亮二维散射系统,以及测量整个研究区域周围的时域响应。然后的目的是根据测量结果确定目标的电磁特性。该问题是针对大量频率在频域中提出的,因此可以对入射脉冲进行精确采样,而不是在时域中。感兴趣的参数,即相对介电常数和电导率分布图,是通过最小化涉及测得的散射场与通过正向模型获得的散射场之间的差异的成本函数来迭代建立的。数值算例表明了所提方法的有效性及其抗噪声能力。还说明了中心频率和入射场带宽对可实现性能的影响。

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