Focusing-Based Newton Solution for Electromagnetic Inverse Scattering Problems

IF 4.6 1区 计算机科学 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC IEEE Transactions on Antennas and Propagation Pub Date : 2024-09-19 DOI:10.1109/TAP.2024.3460193
Erdem Üregen;Ali Yapar
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Abstract

This article presents a new physical linearization technique for inverse scattering problems (ISPs) and an algorithm that integrates this technique with the Newton method. It is shown that focusing the incident field reduces the nonlinearity of the problem, enabling successful reconstructions in high resolution. In addition, the algorithm effectively integrates the focusing approach into the Newton method. With this contribution, the multiple scattering effect due to the whole investigation domain is suppressed, and thus, nonlinear and ill-posed nature of the problem is mitigated. Also, the algorithm eliminates the need for an accurate initial guess since it constructs the required initial guesses through the iterative process. Several numerical tests demonstrating the effectiveness of the focusing concept and the algorithm are conducted. It is shown that the proposed method provides successful reconstructions in which the conventional multi-incidence Newton solution fails. Besides, not only are the reconstruction errors substantially reduced, but the computation times are also decreased by approximately a factor of 3. In addition, the proposed method performs robustly against noise up to 20%.
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基于聚焦的电磁反向散射问题牛顿解法
本文介绍了一种新的反向散射问题(ISPs)物理线性化技术,以及一种将该技术与牛顿法相结合的算法。研究表明,聚焦入射场可降低问题的非线性,从而成功实现高分辨率重建。此外,该算法还有效地将聚焦方法整合到牛顿法中。有了这一贡献,整个研究领域的多重散射效应就被抑制了,从而减轻了问题的非线性和多拟性。此外,该算法无需精确的初始猜测,因为它通过迭代过程构建了所需的初始猜测。我们进行了几项数值测试,证明了聚焦概念和算法的有效性。结果表明,在传统的多入射牛顿解法失效的情况下,所提出的方法能成功地进行重建。此外,不仅重建误差大幅降低,计算时间也减少了约 3 倍。
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来源期刊
CiteScore
10.40
自引率
28.10%
发文量
968
审稿时长
4.7 months
期刊介绍: IEEE Transactions on Antennas and Propagation includes theoretical and experimental advances in antennas, including design and development, and in the propagation of electromagnetic waves, including scattering, diffraction, and interaction with continuous media; and applications pertaining to antennas and propagation, such as remote sensing, applied optics, and millimeter and submillimeter wave techniques
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Table of Contents IEEE Transactions on Antennas and Propagation Publication Information IEEE Transactions on Antennas and Propagation Information for Authors Institutional Listings Table of Contents
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