Bifocusing-Based Imaging of Small Penetrable Dielectric Objects From Fresnel Dataset

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초록

The bifocusing method (BFM) is one of the most effective noniterative techniques for recognizing the existence and outline shape of a set of objects. In most previous studies, the BFM was designed under the assumption that complete elements of the multistatic response (MSR) matrix are collectable. Unfortunately, in the setup in some laboratory-controlled experiments, it is impossible to collect complete elements of the MSR matrix. In other words, the applicability and effectiveness of the BFM are still heuristic. In this article, we consider the application of the BFM for identifying small circular objects from the 2-D Fresnel dataset. To show its applicability and unique determination of objects when complete elements of the MSR matrix are not available, an analytical expression of the BFM imaging function in terms of the infinite series of Bessel function is derived. To demonstrate the theoretical result, the results of numerical simulations with experimental data are presented.

키워드

Bessel functionsbifocusing method (BFM)Fresnel datasetFresnel datasetnumerical simulation resultsnumerical simulation resultsnumerical simulation resultsINVERSE SCATTERINGMUSIC ALGORITHMRECONSTRUCTIONIDENTIFICATIONCRACKS
제목
Bifocusing-Based Imaging of Small Penetrable Dielectric Objects From Fresnel Dataset
저자
Kang, SangwooLee, MinyeobPark, Won-KwangSon, Seong-Ho
DOI
10.1109/TAP.2025.3550328
발행일
2025-07
유형
Article
저널명
IEEE Transactions on Antennas and Propagation
73
7
페이지
4795 ~ 4803