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首页> 外文期刊>Journal of Computational Physics >Analysis of MUSIC-type imaging functional for single, thin electromagnetic inhomogeneity in limited-view inverse scattering problem
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Analysis of MUSIC-type imaging functional for single, thin electromagnetic inhomogeneity in limited-view inverse scattering problem

机译:有限视角逆散射问题中单,薄电磁不均匀性的MUSIC型成像功能分析

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摘要

This study analyzes the well-known MUltiple SIgnal Classification (MUSIC) algorithm to identify unknown support of thin penetrable electromagnetic inhomogeneity from scattered field data collected within the so-called multi-static response matrix in limited-view inverse scattering problems. The mathematical theories of MUSIC are partially discovered, e.g., in the full-view problem, for an unknown target of dielectric contrast or a perfectly conducting crack with the Dirichlet boundary condition (Transverse Magnetic TM polarization) and so on. Hence, we perform further research to analyze the MUSIC-type imaging functional and to certify some well-known but theoretically unexplained phenomena. For this purpose, we establish a relationship between the MUSIC imaging functional and an infinite series of Bessel functions of integer order of the first kind. This relationship is based on the rigorous asymptotic expansion formula in the existence of a thin inhomogeneity with a smooth supporting curve. Various results of numerical simulation are presented in order to support the identified structure of MUSIC. Although a priori information of the target is needed, we suggest a least condition of range of incident and observation directions to apply MUSIC in the limited-view problem. (C) 2015 Elsevier Inc. All rights reserved.
机译:这项研究分析了众所周知的多信号分类算法(MUSIC),以从有限视野逆散射问题中所谓的多静态响应矩阵内收集的散射场数据中识别出薄的可穿透电磁不均匀性的未知支持。 MUSIC的数学理论是部分发现的,例如在全视角问题中,发现了未知的介电对比目标或具有Dirichlet边界条件(横向磁TM极化)的完美传导裂纹等。因此,我们进行了进一步的研究,以分析MUSIC型成像功能并验证一些众所周知但理论上无法解释的现象。为此,我们建立了MUSIC成像功能与无穷一系列第一类整数的Bessel函数之间的关系。这种关系基于严格的渐近展开公式,即存在具有平滑支撑曲线的薄的不均匀性。为了支持MUSIC的确定结构,提出了各种数值模拟结果。尽管需要目标的先验信息,但我们建议将MUSIC用于有限视角问题的入射和观测方向范围的最小条件。 (C)2015 Elsevier Inc.保留所有权利。

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